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Burkert's research at CERN focused on hard scattering processes employing two colliding proton beams each with beam energies up to 31 GeV. This led to the first direct determination of the gluon structure function of the proton.At Jefferson Lab (CEBAF), Burkert led a research program focused on the experimental study of the structure of protons, neutrons and nuclei using high energy electron and photon beams, polarized hydrogen and deuterium targets and the CLAS detector system, suitably instrumented for high rate operation in intense electron beams. This opened up a high-impact scientific program of exclusive electron scattering measurements, where all particles generated in the interaction are detected and identified in CLAS. The required detector modifications enabled the discovery of the theoretically predicted deeply virtual Compton scattering (DVCS) process, which provided the basis for an extensive program to construct 3D images of the proton's internal quark distribution as well their internal mechanical properties. These modifications were also critical for measurements that clarified the internal structure of a series of excited states of the proton as part of the NSTAR program.
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论文共 134 篇作者统计合作学者相似作者
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V. Mokeev, P. Achenbach,Volker Burkert, D. S. Carman, R. W. Gothe,A. N. Hiller Blin, E. L. Isupov, K. S. Joo, K. Neupane, A. Trivedi
Physical Review Cno. 2 (2023)
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Cambridge University Press eBookspp.251-260, (2023)
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European Physical Journal C: Particles and Fieldsno. 12 (2023): 1-636
C. W. Kim, N. Zachariou, M. Bashkanov, W. J. Briscoe,S. Fegan, V. L. Kashevarov, K. Nikonov, A. Sarantsev,Axel Schmidt, I. I. Strakovsky, D. P. Watts, R. L. Workman,
The European Physical Journal Ano. 9 (2023)
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Ye Tian, R. W. Gothe, V. Mokeev, G. Hollis, M. J. Amaryan, W. Armstrong, H. Atac, H. Avakian, L. Barion, M. Battaglieri, I. Bedlinskiy, B. Benkel,
Physical Review Cno. 1 (2023)
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Nuclear Physics B-proceedings Supplements (2022): 232-242
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