The chart shows the distribution of publications by all Research.com ranked scientists in the field of Physics in 2026. The highlighted bar marks where Volker D. Burkert sits on this spectrum.
This scientist: 623 publications — 71st percentile
71% of scientists in this discipline score the same or lower.
The last bar groups every scientist with 1,469 publications or more.
The chart shows the D-index (discipline H-index) distribution of Physics scientists ranked by Research.com in 2026. The highlighted bar marks where Volker D. Burkert sits on this spectrum.
This scientist: 84 D-Index — 28th percentile
28% of scientists in this discipline score the same or lower.
The last bar groups every scientist with 185 D-Index or more.
Volker D. Burkert is affiliated with the Thomas Jefferson National Accelerator Facility in the United States and has contributed extensively to the field of Physics and Astronomy, particularly in Nuclear and High Energy Physics. Their research spans several interconnected topics, including Particle physics theoretical and experimental studies, Quantum Chromodynamics and Particle Interactions, High-Energy Particle Collisions Research, Nuclear physics research studies, Particle Accelerators and Free-Electron Lasers, Dark Matter and Cosmic Phenomena, and Particle Detector Development and Performance.
The scientist has authored numerous publications, with frequent appearances in reputable venues such as Physical Review C, arXiv (Cornell University), Physics Letters B, The European Physical Journal A, and Physical Review Letters.
Key recent papers by Volker D. Burkert include:
Frequent co-authors in their research include W. J. Briscoe, A. D'Angelo, A. Filippi, M. Battaglieri, and P. L. Cole, with collaborations often spanning multiple publications.
Volker D. Burkert has been recognized with the title of Fellow of the American Physical Society (APS) in 2004 for contributions to experimental research in strong QCD and confinement, particularly involving nucleon excitations, transition form factors, and nucleon spin response in the resonance region.
K. A. Olive;K. Agashe;C. Amsler;M. Antonelli
B.A. Mecking;G. Adams;S. Ahmad;E. Anciant
S. Stepanyan;S. Stepanyan;K. Hicks;D. S. Carman;E. Pasyuk
S. Stepanyan;S. Stepanyan;S. Barrow;J.R. Calarco;A. Empl
K. S. Egiyan;N. B. Dashyan;M. M. Sargsian;M. I. Strikman
I. G. Aznauryan;V. D. Burkert;A. S. Biselli;H. Egiyan;H. Egiyan
V. V. Frolov;G. S. Adams;A. Ahmidouch;C. S. Armstrong
Ch. Berger;V. Burkert;G. Knop;B. Langenbeck
W. Xiong;A. Gasparian;H. Gao;D. Dutta
O. Hen;M. Sargsian;L. B. Weinstein;E. Piasetzky
V. Kubarovsky;V. Kubarovsky;L. Guo;D. P. Weygand;P. Stoler
R. Bradford;R. Bradford;R. A. Schumacher;J. W C McNabb;L. Todor
V. D. Burkert;L. Elouadrhiri;F. X. Girod
Volker Burkert;T.-S. H. Lee
F. X. Girod;R. A. Niyazov;R. A. Niyazov;H. Avakian;J. Ball
V.D. Burkert;B.L. Ioffe
Zhenping Li;Volker Burkert;Zhujun Li
V. Kubarovsky;V. Kubarovsky;L. Guo;D. P. Weygand;P. Stoler
I. G. Aznauryan;I. G. Aznauryan;A. Bashir;V. M. Braun;S. J. Brodsky;S. J. Brodsky
R. Abdul Khalek;A. Accardi;J. Adam;D. Adamiak
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