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Proton and neutron electromagnetic form factors and uncertainties

Producción científica: Articlerevisión exhaustiva

119 Citas (Scopus)

Resumen

We determine the nucleon electromagnetic form factors and their uncertainties from world electron scattering data. The analysis incorporates two-photon exchange corrections, constraints on the low-Q2 and high-Q2 behavior, and additional uncertainties to account for tensions between different data sets and uncertainties in radiative corrections.

Idioma originalEnglish
Páginas (desde-hasta)8-15
Número de páginas8
PublicaciónPhysics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics
Volumen777
DOI
EstadoPublished - feb 10 2018

Nota bibliográfica

Publisher Copyright:
© 2017 Elsevier B.V.

Financiación

This work was supported by the U.S. Department of Energy , Office of Science, Office of Nuclear Physics under contract DE-AC02-06CH11357 and Office of High Energy Physics under contract DE-FG02-13ER41958 , and by a NIST Precision Measurement Grant. G.L. acknowledges support by the Israel Science Foundation (Grant No. 720/15 ), by the United States–Israel Binational Science Foundation (BSF) (Grant No. 2014397 ), and by the ICORE Program of the Israel Planning and Budgeting Committee (Grant No. 1937/12 ). G.L. acknowledges the hospitality of the Mainz Institute for Theoretical Physics, where part of this work was completed. R.J.H. thanks TRIUMF for hospitality where a part of this work was performed. Research at Perimeter Institute is supported by the Government of Canada through the Department of Innovation, Science and Economic Development and by the Province of Ontario through the Ministry of Research and Innovation . Fermilab is operated by Fermi Research Alliance, LLC under Contract No. DE-AC02-07CH11359 with the U.S. Department of Energy . This work was supported by the U.S. Department of Energy, Office of Science, Office of Nuclear Physics under contract DE-AC02-06CH11357 and Office of High Energy Physics under contract DE-FG02-13ER41958, and by a NIST Precision Measurement Grant. G.L. acknowledges support by the Israel Science Foundation (Grant No. 720/15), by the United States–Israel Binational Science Foundation (BSF) (Grant No. 2014397), and by the ICORE Program of the Israel Planning and Budgeting Committee (Grant No. 1937/12). G.L. acknowledges the hospitality of the Mainz Institute for Theoretical Physics, where part of this work was completed. R.J.H. thanks TRIUMF for hospitality where a part of this work was performed. Research at Perimeter Institute is supported by the Government of Canada through the Department of Innovation, Science and Economic Development and by the Province of Ontario through the Ministry of Research and Innovation. Fermilab is operated by Fermi Research Alliance, LLC under Contract No. DE-AC02-07CH11359 with the U.S. Department of Energy.

FinanciadoresNúmero del financiador
Fermi Research Alliance, LLC
Spanish Ministry of Research and Innovation
DOE Office of Nuclear Physics
U.S. Department of EnergyDE-AC02-07CH11359, DE-AC02-06CH11357
National Institute of Standards and Technology
Bloom's Syndrome Foundation
Office of Science Programs
Institute for High Energy PhysicsDE-FG02-13ER41958
Innovation, Science and Economic Development Canada
Canada Excellence Research Chairs, Government of Canada
United States-Israel Binational Science Foundation2014397
Ontario Ministry of Research, Innovation and Science
US-Israel Binational Science Foundation720/15
Planning and Budgeting Committee of the Council for Higher Education of Israel1937/12

    ASJC Scopus subject areas

    • Nuclear and High Energy Physics

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