
Photronics (U K) Ltd
Photronics (U K) Ltd
1 Projects, page 1 of 1
assignment_turned_in Project2022 - 2025Partners:University of York, University of Birmingham, CNIT, Beamlet LLC, Skolkovo Inst of Sci and Tech (Skoltech) +135 partnersUniversity of York,University of Birmingham,CNIT,Beamlet LLC,Skolkovo Inst of Sci and Tech (Skoltech),Centre for Process Innovation CPI (UK),University of St Andrews,Quantum Dice,Alter Technology TUV Nord,University of Salford,Royal Holloway University of London,University of St Andrews,Airbus Group Limited (UK),Polytechnic University of Bari,Zero Point Motion Ltd,Duality Quantum Photonics Ltd,Durham University,EADS Airbus,Royal Holloway University of London,Bay Photonics Ltd,Zero Point Motion,EPIC (Electronics & Photonics Innov Ctr),CUHK,University of Oxford,IQE SILICON,BU,University of Bristol,IQE (United Kingdom),Photronics (U K) Ltd,Luceda Photonics,University of Southampton,IQE PLC,USYD,Cardiff University,Resolute Photonics (UK) Ltd,UCL,University of Sheffield,Pointcloud,Tyndall National Institute,Loughborough University,University of Huddersfield,University of Strathclyde,Lancaster University,Camgraphic Ltd,Compound Semiconductor App. Catapult,Sivers Photonics Ltd,Wave Photonics,Resolute Photonics (UK) Ltd,Lancaster University,UCC,Imperial College London,Hokkaido University,Compugraphics International Ltd,Nanyang Technological University,University of Cambridge,CPI,EUROPRACTICE (International),Airbus (United Kingdom),Beamlet LLC,Compound Semiconductor App. Catapult,Fudan University,University of South Wales,EPIC (Electronics & Photonics Innov Ctr),UNIVERSITY OF SOUTH WALES,Loughborough University,Bath Spa University,ROYAL HOLLOWAY UNIV OF LONDON,Compugraphics International Ltd,Duality Quantum Photonics Ltd,University of Sussex,Heriot-Watt University,Newcastle University,ČVUT,University of Manchester,CPI,NTU,Fudan University,University of Sheffield,Huawei Technologies (Germany),EADS Airbus,City, University of London,Skolkovo Inst of Sci and Tech (Skoltech),BU,Consorzio Nazionale Interuniversitario per le Telecomunicazioni,University of Birmingham,Rockley Photonics Limited (UK),Pointcloud,Sivers Photonics Ltd,Quantum Dice,Photronics (U K) Ltd,CompoundTek Pte Ltd,University of St Andrews,OnPoint Digital Solutions,Anchored In Ltd,Heriot-Watt University,Huawei Technologies,University of Huddersfield,University of South Wales,EUROPRACTICE (International),Durham University,[no title available],Camgraphic Ltd,Oxford Instruments (United Kingdom),University of Bath,Wave Photonics,University of Huddersfield,CARDIFF UNIVERSITY,Centre for Process Innovation,Cardiff University,University of Cambridge,Compugraphics (United Kingdom),University of York,Heriot-Watt University,UMA,Oxford Instruments (United Kingdom),Cardiff University,Luceda Photonics,QUB,CompoundTek Pte Ltd,University of Bath,Anchored In Ltd,Alter Technology TUV Nord,Oxford Instruments (United Kingdom),Bangor University,OnPoint Digital Solutions,Newcastle University,Photonics Leadership Group,City, University of London,The University of Manchester,Photonics Leadership Group,Polytechnic University of Bari,Rockley Photonics Limited (UK),UNIVERSITY OF CAMBRIDGE,Bay Photonics Ltd,University of Southampton,University of Bristol,University of Bari Aldo Moro,University of Sussex,University of Strathclyde,IQE SILICONFunder: UK Research and Innovation Project Code: EP/W035995/1Funder Contribution: 1,538,490 GBPSilicon photonics is the manipulation of light (photons) in silicon-based substrates, analogous to electronics, which is the manipulation of electrons. The development cycle of a silicon photonics device consists of three stages: design, fabrication, and characterisation. Whilst design and characterisation can readily be done by research groups around the country, the fabrication of silicon photonics devices, circuits and systems requires large scale investments and capital equipment such as cleanrooms, lithography, etching equipment etc. Based at the Universities of Southampton and Glasgow, CORNERSTONE 2.5 will provide world-leading fabrication capability to silicon photonics researchers and the wider science community. Whilst silicon photonics is the focus of CORNERSTONE 2.5, it will also support other technologies that utilise similar fabrication processes, such as MEMS or microfluidics, and the integration of light sources with silicon photonics integrated circuits, as well as supporting any research area that requires high-resolution lithography. The new specialised capabilities available to researchers to support emerging applications in silicon photonics are: 1) quantum photonics based on silicon-on-insulator (SOI) wafers; 2) programmable photonics; 3) all-silicon photodetection; 4) high efficiency grating couplers for low energy, power sensitive systems; 5) enhanced sensing platforms; and 6) light source integration to the silicon nitride platform. Access will be facilitated via a multi-project-wafer (MPW) mechanism whereby multiple users' designs will be fabricated in parallel on the same wafer. This is enabled by the 8" wafer-scale processing capability centred around a deep-UV projection lithography scanner installed at the University of Southampton. The value of CORNERSTONE 2.5 to researchers who wish to use it is enhanced by a network of supporting companies, each providing significant expertise and added value to users. Supporting companies include process-design-kit (PDK) software specialists (Luceda Photonics), reticle suppliers (Compugraphics, Photronics), packaging facilities (Tyndall National Institute, Bay Photonics, Alter Technologies), a mass production silicon photonics foundry (CompoundTek), an epitaxy partner for germanium-on-silicon growth (IQE), fabrication processing support (Oxford Instruments), an MPW broker (EUROPRACTICE), a III-V die supplier (Sivers Semiconductors) and promotion and outreach partners (Photonics Leadership Group, EPIC, CSA Catapult, CPI, Anchored In). Access to the new capabilities will be free-of-charge to UK academics in months 13-18 of the project, and 75% subsidised by the grant in months 19-24. During the 2-year project, we will also canvas UK demand for the capability to continue to operate as an EPSRC National Research Facility, and if so, to establish a Statement of Need.
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