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description Publicationkeyboard_double_arrow_right Article 2024Embargo end date: 16 Jul 2024 Switzerland, GermanyPublisher:American Geophysical Union (AGU) Funded by:EC | XAIDA, NSF | The Management and Operat..., UKRI | Consequences of Arctic Wa... +1 projectsEC| XAIDA ,NSF| The Management and Operation of the National Center for Atmoshperic Research (NCAR) ,UKRI| Consequences of Arctic Warming for European Climate and Extreme Weather ,EC| PolarRESAlexey Yu. Karpechko; Zheng Wu; Isla R. Simpson; Marlene Kretschmer; Hilla Afargan‐Gerstman; Amy H. Butler; Daniela I.V. Domeisen; Hella Garny; Zachary Lawrence; Elisa Manzini; Michael Sigmond;AbstractWe analyze the sources for spread in the response of the Northern Hemisphere wintertime stratospheric polar vortex (SPV) to global warming in Climate Model Intercomparison Project Phase 5 (CMIP5) and Phase 6 (CMIP6) model projections. About half of the intermodel spread in SPV projections by CMIP6 models, but less than a third in CMIP5 models, can be attributed to the intermodel spread in stationary planetary wave driving. In CMIP6, SPV weakening is mostly driven by increased upward wave flux from the troposphere, while SPV strengthening is associated with increased equatorward wave propagation away from the polar stratosphere. We test hypothesized factors contributing to changes in the upward and equatorward planetary wave fluxes and show that an across‐model regression using projected global warming rates, strengthening of the subtropical jet and basic state lower stratospheric wind biases as predictors can explain nearly the same fraction in the CMIP6 SPV spread as the planetary wave driving (r = 0.67). The dependence of the SPV spread on the model biases in the basic state winds offers a possible emergent constraint; however, a large uncertainty prevents a substantial reduction of the projected SPV spread. The lack of this dependence in CMIP5 further calls for better understanding of underlying causes. Our results improve understanding of projected SPV uncertainty; however, further narrowing of the uncertainty remains challenging.
Journal of Geophysic... arrow_drop_down Journal of Geophysical Research AtmospheresArticle . 2024 . Peer-reviewedLicense: CC BYData sources: Crossrefadd ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1029/2024jd040823&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eu3 citations 3 popularity Average influence Average impulse Average Powered by BIP!
more_vert Journal of Geophysic... arrow_drop_down Journal of Geophysical Research AtmospheresArticle . 2024 . Peer-reviewedLicense: CC BYData sources: Crossrefadd ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1029/2024jd040823&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Other literature type 2024 Germany, France, FrancePublisher:Wiley Funded by:DFG | German Centre for Integra..., DFGDFG| German Centre for Integrative Biodiversity Research - iDiv ,DFGNico Eisenhauer; Karin Frank; Alexandra Weigelt; Bartosz Bartkowski; Rémy Beugnon; Katja Liebal; Miguel D. Mahecha; Martin F. Quaas; Djamil Al‐Halbouni; Ana Bastos; Friedrich J. Bohn; Mariana Madruga de Brito; Joachim Denzler; Hannes Feilhauer; Rico Fischer; Immo Fritsche; Claudia Guimarães‐Steinicke; Martin Hänsel; Daniel B. M. Haun; Hartmut Herrmann; Andreas Huth; Heike Kalesse‐Los; Michael Koetter; Nina Kolleck; Melanie Krause; Marlene Kretschmer; Pedro J. Leitão; Torsten Masson; Karin Mora; Birgit Müller; Jian Peng; Mira L. Pöhlker; Leonie Ratzke; Markus Reichstein; Solveig Richter; Nadja Rüger; Beatriz Sánchez‐Parra; Maha Shadaydeh; Sebastian Sippel; Ina Tegen; Daniela Thrän; Josefine Umlauft; Manfred Wendisch; Kevin Wolf; Christian Wirth; Hannes Zacher; Sönke Zaehle; Johannes Quaas;AbstractSoil is central to the complex interplay among biodiversity, climate, and society. This paper examines the interconnectedness of soil biodiversity, climate change, and societal impacts, emphasizing the urgent need for integrated solutions. Human‐induced biodiversity loss and climate change intensify environmental degradation, threatening human well‐being. Soils, rich in biodiversity and vital for ecosystem function regulation, are highly vulnerable to these pressures, affecting nutrient cycling, soil fertility, and resilience. Soil also crucially regulates climate, influencing energy, water cycles, and carbon storage. Yet, climate change poses significant challenges to soil health and carbon dynamics, amplifying global warming. Integrated approaches are essential, including sustainable land management, policy interventions, technological innovations, and societal engagement. Practices like agroforestry and organic farming improve soil health and mitigate climate impacts. Effective policies and governance are crucial for promoting sustainable practices and soil conservation. Recent technologies aid in monitoring soil biodiversity and implementing sustainable land management. Societal engagement, through education and collective action, is vital for environmental stewardship. By prioritizing interdisciplinary research and addressing key frontiers, scientists can advance understanding of the soil biodiversity–climate change–society nexus, informing strategies for environmental sustainability and social equity.
Journal of Sustainab... arrow_drop_down Journal of Sustainable Agriculture and EnvironmentArticle . 2024 . Peer-reviewedLicense: CC BYData sources: CrossrefInstitut National de la Recherche Agronomique: ProdINRAArticle . 2024Data sources: Bielefeld Academic Search Engine (BASE)Publication Database PIK (Potsdam Institute for Climate Impact Research)Article . 2024License: CC BYData sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1002/sae2.12108&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eu5 citations 5 popularity Average influence Average impulse Top 10% Powered by BIP!
more_vert Journal of Sustainab... arrow_drop_down Journal of Sustainable Agriculture and EnvironmentArticle . 2024 . Peer-reviewedLicense: CC BYData sources: CrossrefInstitut National de la Recherche Agronomique: ProdINRAArticle . 2024Data sources: Bielefeld Academic Search Engine (BASE)Publication Database PIK (Potsdam Institute for Climate Impact Research)Article . 2024License: CC BYData sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1002/sae2.12108&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Other literature type , Review , Journal 2019 Netherlands, Germany, United Kingdom, NetherlandsPublisher:Springer Science and Business Media LLC Funded by:AKA | Arctic Forcing on Europea..., DFG, NSF | The Combined Influence of... +2 projectsAKA| Arctic Forcing on European weather and climate (AFEC) ,DFG ,NSF| The Combined Influence of sea ice and snow cover on Northern Hemisphere Atmospheric Climate Variability ,NSF| Collaborative Research: Linking sea ice and snow cover changes to Greenland mass balance through stratospheric and tropospheric pathways ,DFG| ArctiC Amplification: Climate Relevant Atmospheric and SurfaCe Processes, and Feedback Mechanisms (AC)3Steven B. Feldstein; Uma S. Bhatt; Thomas Jung; Thomas Jung; Judah Cohen; Jennifer A. Francis; Hans W. Chen; Hans W. Chen; Xiangdong Zhang; Yutian Wu; Dim Coumou; Dim Coumou; Yannick Peings; Monica Ionita; Shih-Yu Wang; Gina R. Henderson; Timo Vihma; Ignatius Rigor; Julienne Stroeve; Frédéric Laliberté; Marlene Kretschmer; Tido Semmler; James E. Overland; Thomas J. Ballinger; Hans W. Linderholm; Hans W. Linderholm; Hongping Gu; Ron Kwok; Steve Vavrus; Dörthe Handorf; Wieslaw Maslowski; Karl Pfeiffer; Jin-Ho Yoon; Manfred Wendisch; Patrick C. Taylor; Sukyoung Lee;The Arctic has warmed more than twice as fast as the global average since the late twentieth century, a phenomenon known as Arctic amplification (AA). Recently, there have been considerable advances in understanding the physical contributions to AA, and progress has been made in understanding the mechanisms that link it to midlatitude weather variability. Observational studies overwhelmingly support that AA is contributing to winter continental cooling. Although some model experiments support the observational evidence, most modelling results show little connection between AA and severe midlatitude weather or suggest the export of excess heating from the Arctic to lower latitudes. Divergent conclusions between model and observational studies, and even intramodel studies, continue to obfuscate a clear understanding of how AA is influencing midlatitude weather.
Nature Climate Chang... arrow_drop_down Electronic Publication Information CenterArticle . 2019Data sources: Electronic Publication Information CenterNature Climate ChangeOther literature type . 2020Data sources: DANS (Data Archiving and Networked Services)Publication Database PIK (Potsdam Institute for Climate Impact Research)Article . 2020Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41558-019-0662-y&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen bronze 538 citations 538 popularity Top 0.1% influence Top 1% impulse Top 0.1% Powered by BIP!
more_vert Nature Climate Chang... arrow_drop_down Electronic Publication Information CenterArticle . 2019Data sources: Electronic Publication Information CenterNature Climate ChangeOther literature type . 2020Data sources: DANS (Data Archiving and Networked Services)Publication Database PIK (Potsdam Institute for Climate Impact Research)Article . 2020Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41558-019-0662-y&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Conference object , Other literature type 2018 Netherlands, Netherlands, GermanyPublisher:Springer Science and Business Media LLC Funded by:NSF | The Combined Influence of...NSF| The Combined Influence of sea ice and snow cover on Northern Hemisphere Atmospheric Climate VariabilityDim Coumou; Dim Coumou; Judah Cohen; Marlene Kretschmer; Marlene Kretschmer; Jakob Runge; Vivien Matthias;AbstractThe stratospheric polar vortex can influence the tropospheric circulation and thereby winter weather in the mid-latitudes. Weak vortex states, often associated with sudden stratospheric warmings (SSW), have been shown to increase the risk of cold-spells especially over Eurasia, but its role for North American winters is less clear. Using cluster analysis, we show that there are two dominant patterns of increased polar cap heights in the lower stratosphere. Both patterns represent a weak polar vortex but they are associated with different wave mechanisms and different regional tropospheric impacts. The first pattern is zonally symmetric and associated with absorbed upward-propagating wave activity, leading to a negative phase of the North Atlantic Oscillation (NAO) and cold-air outbreaks over northern Eurasia. This coupling mechanism is well-documented in the literature and is consistent with the downward migration of the northern annular mode (NAM). The second pattern is zonally asymmetric and linked to downward reflected planetary waves over Canada followed by a negative phase of the Western Pacific Oscillation (WPO) and cold-spells in Central Canada and the Great Lakes region. Causal effect network (CEN) analyses confirm the atmospheric pathways associated with this asymmetric pattern. Moreover, our findings suggest the reflective mechanism to be sensitive to the exact region of upward wave-activity fluxes and to be state-dependent on the strength of the vortex. Identifying the causal pathways that operate on weekly to monthly timescales can pave the way for improved sub-seasonal to seasonal forecasting of cold spells in the mid-latitudes.
CORE arrow_drop_down npj Climate and Atmospheric ScienceArticle . 2018 . Peer-reviewedLicense: CC BYData sources: Crossrefnpj Climate and Atmospheric ScienceArticle . 2018Data sources: DANS (Data Archiving and Networked Services)npj Climate and Atmospheric ScienceArticle . 2018Publikationsserver der Universität PotsdamArticle . 2018License: CC BYData sources: Publikationsserver der Universität Potsdamadd ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41612-018-0054-4&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 105 citations 105 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
more_vert CORE arrow_drop_down npj Climate and Atmospheric ScienceArticle . 2018 . Peer-reviewedLicense: CC BYData sources: Crossrefnpj Climate and Atmospheric ScienceArticle . 2018Data sources: DANS (Data Archiving and Networked Services)npj Climate and Atmospheric ScienceArticle . 2018Publikationsserver der Universität PotsdamArticle . 2018License: CC BYData sources: Publikationsserver der Universität Potsdamadd ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41612-018-0054-4&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Other literature type 2024 United Kingdom, Germany, GermanyPublisher:American Geophysical Union (AGU) Funded by:EC | XAIDA, DFGEC| XAIDA ,DFGMiguel D. Mahecha; Ana Bastos; Friedrich J. Bohn; Nico Eisenhauer; Hannes Feilhauer; Thomas Hickler; Heike Kalesse‐Los; Mirco Migliavacca; Friederike E. L. Otto; Jian Peng; Sebastian Sippel; Ina Tegen; Alexandra Weigelt; Manfred Wendisch; Christian Wirth; Djamil Al‐Halbouni; Hartwig Deneke; Daniel Doktor; Susanne Dunker; Grégory Duveiller; André Ehrlich; Andreas Foth; Almudena García‐García; Carlos A. Guerra; Claudia Guimarães‐Steinicke; Henrik Hartmann; Silvia Henning; Hartmut Herrmann; Pin-hsin Hu; Chaonan Ji; Teja Kattenborn; Nina Kolleck; Marlene Kretschmer; Ingolf Kühn; Marie Luise Luttkus; Maximilian Maahn; Milena Mönks; Karin Mora; Mira L. Pöhlker; Markus Reichstein; Nadja Rüger; Beatriz Sánchez‐Parra; Michael Schäfer; Frank Stratmann; Matthias Tesche; Birgit Wehner; Sebastian Wieneke; Alexander J. Winkler; Sophie Wolf; Sönke Zaehle; Jakob Zscheischler; Johannes Quaas;handle: 10044/1/112637
AbstractClimate extremes are on the rise. Impacts of extreme climate and weather events on ecosystem services and ultimately human well‐being can be partially attenuated by the organismic, structural, and functional diversity of the affected land surface. However, the ongoing transformation of terrestrial ecosystems through intensified exploitation and management may put this buffering capacity at risk. Here, we summarize the evidence that reductions in biodiversity can destabilize the functioning of ecosystems facing climate extremes. We then explore if impaired ecosystem functioning could, in turn, exacerbate climate extremes. We argue that only a comprehensive approach, incorporating both ecological and hydrometeorological perspectives, enables us to understand and predict the entire feedback system between altered biodiversity and climate extremes. This ambition, however, requires a reformulation of current research priorities to emphasize the bidirectional effects that link ecology and atmospheric processes.
Imperial College Lon... arrow_drop_down Imperial College London: SpiralArticle . 2024License: CC BYFull-Text: http://hdl.handle.net/10044/1/112637Data sources: Bielefeld Academic Search Engine (BASE)University of Freiburg: FreiDokArticle . 2024Full-Text: https://freidok.uni-freiburg.de/data/258694Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1029/2023ef003963&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eu11 citations 11 popularity Average influence Average impulse Top 10% Powered by BIP!
more_vert Imperial College Lon... arrow_drop_down Imperial College London: SpiralArticle . 2024License: CC BYFull-Text: http://hdl.handle.net/10044/1/112637Data sources: Bielefeld Academic Search Engine (BASE)University of Freiburg: FreiDokArticle . 2024Full-Text: https://freidok.uni-freiburg.de/data/258694Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1029/2023ef003963&type=result"></script>'); --> </script>
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description Publicationkeyboard_double_arrow_right Article 2024Embargo end date: 16 Jul 2024 Switzerland, GermanyPublisher:American Geophysical Union (AGU) Funded by:EC | XAIDA, NSF | The Management and Operat..., UKRI | Consequences of Arctic Wa... +1 projectsEC| XAIDA ,NSF| The Management and Operation of the National Center for Atmoshperic Research (NCAR) ,UKRI| Consequences of Arctic Warming for European Climate and Extreme Weather ,EC| PolarRESAlexey Yu. Karpechko; Zheng Wu; Isla R. Simpson; Marlene Kretschmer; Hilla Afargan‐Gerstman; Amy H. Butler; Daniela I.V. Domeisen; Hella Garny; Zachary Lawrence; Elisa Manzini; Michael Sigmond;AbstractWe analyze the sources for spread in the response of the Northern Hemisphere wintertime stratospheric polar vortex (SPV) to global warming in Climate Model Intercomparison Project Phase 5 (CMIP5) and Phase 6 (CMIP6) model projections. About half of the intermodel spread in SPV projections by CMIP6 models, but less than a third in CMIP5 models, can be attributed to the intermodel spread in stationary planetary wave driving. In CMIP6, SPV weakening is mostly driven by increased upward wave flux from the troposphere, while SPV strengthening is associated with increased equatorward wave propagation away from the polar stratosphere. We test hypothesized factors contributing to changes in the upward and equatorward planetary wave fluxes and show that an across‐model regression using projected global warming rates, strengthening of the subtropical jet and basic state lower stratospheric wind biases as predictors can explain nearly the same fraction in the CMIP6 SPV spread as the planetary wave driving (r = 0.67). The dependence of the SPV spread on the model biases in the basic state winds offers a possible emergent constraint; however, a large uncertainty prevents a substantial reduction of the projected SPV spread. The lack of this dependence in CMIP5 further calls for better understanding of underlying causes. Our results improve understanding of projected SPV uncertainty; however, further narrowing of the uncertainty remains challenging.
Journal of Geophysic... arrow_drop_down Journal of Geophysical Research AtmospheresArticle . 2024 . Peer-reviewedLicense: CC BYData sources: Crossrefadd ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1029/2024jd040823&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eu3 citations 3 popularity Average influence Average impulse Average Powered by BIP!
more_vert Journal of Geophysic... arrow_drop_down Journal of Geophysical Research AtmospheresArticle . 2024 . Peer-reviewedLicense: CC BYData sources: Crossrefadd ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1029/2024jd040823&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Other literature type 2024 Germany, France, FrancePublisher:Wiley Funded by:DFG | German Centre for Integra..., DFGDFG| German Centre for Integrative Biodiversity Research - iDiv ,DFGNico Eisenhauer; Karin Frank; Alexandra Weigelt; Bartosz Bartkowski; Rémy Beugnon; Katja Liebal; Miguel D. Mahecha; Martin F. Quaas; Djamil Al‐Halbouni; Ana Bastos; Friedrich J. Bohn; Mariana Madruga de Brito; Joachim Denzler; Hannes Feilhauer; Rico Fischer; Immo Fritsche; Claudia Guimarães‐Steinicke; Martin Hänsel; Daniel B. M. Haun; Hartmut Herrmann; Andreas Huth; Heike Kalesse‐Los; Michael Koetter; Nina Kolleck; Melanie Krause; Marlene Kretschmer; Pedro J. Leitão; Torsten Masson; Karin Mora; Birgit Müller; Jian Peng; Mira L. Pöhlker; Leonie Ratzke; Markus Reichstein; Solveig Richter; Nadja Rüger; Beatriz Sánchez‐Parra; Maha Shadaydeh; Sebastian Sippel; Ina Tegen; Daniela Thrän; Josefine Umlauft; Manfred Wendisch; Kevin Wolf; Christian Wirth; Hannes Zacher; Sönke Zaehle; Johannes Quaas;AbstractSoil is central to the complex interplay among biodiversity, climate, and society. This paper examines the interconnectedness of soil biodiversity, climate change, and societal impacts, emphasizing the urgent need for integrated solutions. Human‐induced biodiversity loss and climate change intensify environmental degradation, threatening human well‐being. Soils, rich in biodiversity and vital for ecosystem function regulation, are highly vulnerable to these pressures, affecting nutrient cycling, soil fertility, and resilience. Soil also crucially regulates climate, influencing energy, water cycles, and carbon storage. Yet, climate change poses significant challenges to soil health and carbon dynamics, amplifying global warming. Integrated approaches are essential, including sustainable land management, policy interventions, technological innovations, and societal engagement. Practices like agroforestry and organic farming improve soil health and mitigate climate impacts. Effective policies and governance are crucial for promoting sustainable practices and soil conservation. Recent technologies aid in monitoring soil biodiversity and implementing sustainable land management. Societal engagement, through education and collective action, is vital for environmental stewardship. By prioritizing interdisciplinary research and addressing key frontiers, scientists can advance understanding of the soil biodiversity–climate change–society nexus, informing strategies for environmental sustainability and social equity.
Journal of Sustainab... arrow_drop_down Journal of Sustainable Agriculture and EnvironmentArticle . 2024 . Peer-reviewedLicense: CC BYData sources: CrossrefInstitut National de la Recherche Agronomique: ProdINRAArticle . 2024Data sources: Bielefeld Academic Search Engine (BASE)Publication Database PIK (Potsdam Institute for Climate Impact Research)Article . 2024License: CC BYData sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1002/sae2.12108&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eu5 citations 5 popularity Average influence Average impulse Top 10% Powered by BIP!
more_vert Journal of Sustainab... arrow_drop_down Journal of Sustainable Agriculture and EnvironmentArticle . 2024 . Peer-reviewedLicense: CC BYData sources: CrossrefInstitut National de la Recherche Agronomique: ProdINRAArticle . 2024Data sources: Bielefeld Academic Search Engine (BASE)Publication Database PIK (Potsdam Institute for Climate Impact Research)Article . 2024License: CC BYData sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1002/sae2.12108&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Other literature type , Review , Journal 2019 Netherlands, Germany, United Kingdom, NetherlandsPublisher:Springer Science and Business Media LLC Funded by:AKA | Arctic Forcing on Europea..., DFG, NSF | The Combined Influence of... +2 projectsAKA| Arctic Forcing on European weather and climate (AFEC) ,DFG ,NSF| The Combined Influence of sea ice and snow cover on Northern Hemisphere Atmospheric Climate Variability ,NSF| Collaborative Research: Linking sea ice and snow cover changes to Greenland mass balance through stratospheric and tropospheric pathways ,DFG| ArctiC Amplification: Climate Relevant Atmospheric and SurfaCe Processes, and Feedback Mechanisms (AC)3Steven B. Feldstein; Uma S. Bhatt; Thomas Jung; Thomas Jung; Judah Cohen; Jennifer A. Francis; Hans W. Chen; Hans W. Chen; Xiangdong Zhang; Yutian Wu; Dim Coumou; Dim Coumou; Yannick Peings; Monica Ionita; Shih-Yu Wang; Gina R. Henderson; Timo Vihma; Ignatius Rigor; Julienne Stroeve; Frédéric Laliberté; Marlene Kretschmer; Tido Semmler; James E. Overland; Thomas J. Ballinger; Hans W. Linderholm; Hans W. Linderholm; Hongping Gu; Ron Kwok; Steve Vavrus; Dörthe Handorf; Wieslaw Maslowski; Karl Pfeiffer; Jin-Ho Yoon; Manfred Wendisch; Patrick C. Taylor; Sukyoung Lee;The Arctic has warmed more than twice as fast as the global average since the late twentieth century, a phenomenon known as Arctic amplification (AA). Recently, there have been considerable advances in understanding the physical contributions to AA, and progress has been made in understanding the mechanisms that link it to midlatitude weather variability. Observational studies overwhelmingly support that AA is contributing to winter continental cooling. Although some model experiments support the observational evidence, most modelling results show little connection between AA and severe midlatitude weather or suggest the export of excess heating from the Arctic to lower latitudes. Divergent conclusions between model and observational studies, and even intramodel studies, continue to obfuscate a clear understanding of how AA is influencing midlatitude weather.
Nature Climate Chang... arrow_drop_down Electronic Publication Information CenterArticle . 2019Data sources: Electronic Publication Information CenterNature Climate ChangeOther literature type . 2020Data sources: DANS (Data Archiving and Networked Services)Publication Database PIK (Potsdam Institute for Climate Impact Research)Article . 2020Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41558-019-0662-y&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen bronze 538 citations 538 popularity Top 0.1% influence Top 1% impulse Top 0.1% Powered by BIP!
more_vert Nature Climate Chang... arrow_drop_down Electronic Publication Information CenterArticle . 2019Data sources: Electronic Publication Information CenterNature Climate ChangeOther literature type . 2020Data sources: DANS (Data Archiving and Networked Services)Publication Database PIK (Potsdam Institute for Climate Impact Research)Article . 2020Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41558-019-0662-y&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Conference object , Other literature type 2018 Netherlands, Netherlands, GermanyPublisher:Springer Science and Business Media LLC Funded by:NSF | The Combined Influence of...NSF| The Combined Influence of sea ice and snow cover on Northern Hemisphere Atmospheric Climate VariabilityDim Coumou; Dim Coumou; Judah Cohen; Marlene Kretschmer; Marlene Kretschmer; Jakob Runge; Vivien Matthias;AbstractThe stratospheric polar vortex can influence the tropospheric circulation and thereby winter weather in the mid-latitudes. Weak vortex states, often associated with sudden stratospheric warmings (SSW), have been shown to increase the risk of cold-spells especially over Eurasia, but its role for North American winters is less clear. Using cluster analysis, we show that there are two dominant patterns of increased polar cap heights in the lower stratosphere. Both patterns represent a weak polar vortex but they are associated with different wave mechanisms and different regional tropospheric impacts. The first pattern is zonally symmetric and associated with absorbed upward-propagating wave activity, leading to a negative phase of the North Atlantic Oscillation (NAO) and cold-air outbreaks over northern Eurasia. This coupling mechanism is well-documented in the literature and is consistent with the downward migration of the northern annular mode (NAM). The second pattern is zonally asymmetric and linked to downward reflected planetary waves over Canada followed by a negative phase of the Western Pacific Oscillation (WPO) and cold-spells in Central Canada and the Great Lakes region. Causal effect network (CEN) analyses confirm the atmospheric pathways associated with this asymmetric pattern. Moreover, our findings suggest the reflective mechanism to be sensitive to the exact region of upward wave-activity fluxes and to be state-dependent on the strength of the vortex. Identifying the causal pathways that operate on weekly to monthly timescales can pave the way for improved sub-seasonal to seasonal forecasting of cold spells in the mid-latitudes.
CORE arrow_drop_down npj Climate and Atmospheric ScienceArticle . 2018 . Peer-reviewedLicense: CC BYData sources: Crossrefnpj Climate and Atmospheric ScienceArticle . 2018Data sources: DANS (Data Archiving and Networked Services)npj Climate and Atmospheric ScienceArticle . 2018Publikationsserver der Universität PotsdamArticle . 2018License: CC BYData sources: Publikationsserver der Universität Potsdamadd ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41612-018-0054-4&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 105 citations 105 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
more_vert CORE arrow_drop_down npj Climate and Atmospheric ScienceArticle . 2018 . Peer-reviewedLicense: CC BYData sources: Crossrefnpj Climate and Atmospheric ScienceArticle . 2018Data sources: DANS (Data Archiving and Networked Services)npj Climate and Atmospheric ScienceArticle . 2018Publikationsserver der Universität PotsdamArticle . 2018License: CC BYData sources: Publikationsserver der Universität Potsdamadd ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41612-018-0054-4&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Other literature type 2024 United Kingdom, Germany, GermanyPublisher:American Geophysical Union (AGU) Funded by:EC | XAIDA, DFGEC| XAIDA ,DFGMiguel D. Mahecha; Ana Bastos; Friedrich J. Bohn; Nico Eisenhauer; Hannes Feilhauer; Thomas Hickler; Heike Kalesse‐Los; Mirco Migliavacca; Friederike E. L. Otto; Jian Peng; Sebastian Sippel; Ina Tegen; Alexandra Weigelt; Manfred Wendisch; Christian Wirth; Djamil Al‐Halbouni; Hartwig Deneke; Daniel Doktor; Susanne Dunker; Grégory Duveiller; André Ehrlich; Andreas Foth; Almudena García‐García; Carlos A. Guerra; Claudia Guimarães‐Steinicke; Henrik Hartmann; Silvia Henning; Hartmut Herrmann; Pin-hsin Hu; Chaonan Ji; Teja Kattenborn; Nina Kolleck; Marlene Kretschmer; Ingolf Kühn; Marie Luise Luttkus; Maximilian Maahn; Milena Mönks; Karin Mora; Mira L. Pöhlker; Markus Reichstein; Nadja Rüger; Beatriz Sánchez‐Parra; Michael Schäfer; Frank Stratmann; Matthias Tesche; Birgit Wehner; Sebastian Wieneke; Alexander J. Winkler; Sophie Wolf; Sönke Zaehle; Jakob Zscheischler; Johannes Quaas;handle: 10044/1/112637
AbstractClimate extremes are on the rise. Impacts of extreme climate and weather events on ecosystem services and ultimately human well‐being can be partially attenuated by the organismic, structural, and functional diversity of the affected land surface. However, the ongoing transformation of terrestrial ecosystems through intensified exploitation and management may put this buffering capacity at risk. Here, we summarize the evidence that reductions in biodiversity can destabilize the functioning of ecosystems facing climate extremes. We then explore if impaired ecosystem functioning could, in turn, exacerbate climate extremes. We argue that only a comprehensive approach, incorporating both ecological and hydrometeorological perspectives, enables us to understand and predict the entire feedback system between altered biodiversity and climate extremes. This ambition, however, requires a reformulation of current research priorities to emphasize the bidirectional effects that link ecology and atmospheric processes.
Imperial College Lon... arrow_drop_down Imperial College London: SpiralArticle . 2024License: CC BYFull-Text: http://hdl.handle.net/10044/1/112637Data sources: Bielefeld Academic Search Engine (BASE)University of Freiburg: FreiDokArticle . 2024Full-Text: https://freidok.uni-freiburg.de/data/258694Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1029/2023ef003963&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eu11 citations 11 popularity Average influence Average impulse Top 10% Powered by BIP!
more_vert Imperial College Lon... arrow_drop_down Imperial College London: SpiralArticle . 2024License: CC BYFull-Text: http://hdl.handle.net/10044/1/112637Data sources: Bielefeld Academic Search Engine (BASE)University of Freiburg: FreiDokArticle . 2024Full-Text: https://freidok.uni-freiburg.de/data/258694Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1029/2023ef003963&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eu