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Polarized Structure Function $\sigma_{LT'}$ from $\pi^0 p$ Electroproduction Data in the Resonance Region at $0.4$ GeV$^2 < Q^2 < 1.0$ GeV$^2$
arXiv: 2112.07732
handle: 2108/319259
The first results on the $\sigma_{LT'}$ structure function in exclusive $\pi^0p$ electroproduction at invariant masses of the final state of 1.5 GeV $<$ $W$ $<$ 1.8 GeV and in the range of photon virtualities 0.4 GeV$^2 < Q^2 < 1.0$ GeV$^2$ were obtained from data on beam spin asymmetries and differential cross sections measured with the CLAS detector at Jefferson Lab. The Legendre moments determined from the $\sigma_{LT'}$ structure function have demonstrated sensitivity to the contributions from the nucleon resonances in the second and third resonance regions. These new data on the beam spin asymmetries in $\pi^0p$ electroproduction extend the opportunities for the extraction of the nucleon resonance electroexcitation amplitudes in the mass range above 1.6 GeV.
Comment: 7 pages, 3 figures
- Florida Southern College United States
- Christopher Newport University United States
- Christopher Newport UniversityChristopher Newport UniversityChristopher Newport UniversityChristopher Newport UniversityChristopher Newport UniversityChristopher Newport UniversityChristopher Newport UniversityChristopher Newport University United States
- California State University, Fullerton United States
- California State University, Chico United States
Settore FIS/04 - FISICA NUCLEARE E SUBNUCLEARE, [PHYS.NUCL]Physics [physics]/Nuclear Theory [nucl-th], polarized beam, nucleon resonance, final state, GeV, spin, energy dependence, differential cross section: measured, structure function, CLAS, Nuclear Experiment, final state: mass, photon, electroproduction, sensitivity, structure function: polarization, angular dependence, differential cross section, pi0: electroproduction, measured, mass, spin: asymmetry, asymmetry, experimental results, Jefferson Lab
Settore FIS/04 - FISICA NUCLEARE E SUBNUCLEARE, [PHYS.NUCL]Physics [physics]/Nuclear Theory [nucl-th], polarized beam, nucleon resonance, final state, GeV, spin, energy dependence, differential cross section: measured, structure function, CLAS, Nuclear Experiment, final state: mass, photon, electroproduction, sensitivity, structure function: polarization, angular dependence, differential cross section, pi0: electroproduction, measured, mass, spin: asymmetry, asymmetry, experimental results, Jefferson Lab
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