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 S. E. Vigdor sits on this spectrum.
This scientist: 271 publications — 13th percentile
13% 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 S. E. Vigdor sits on this spectrum.
This scientist: 85 D-Index — 31st percentile
31% of scientists in this discipline score the same or lower.
The last bar groups every scientist with 185 D-Index or more.
S. E. Vigdor is affiliated with Indiana University in the United States. The scholar's professional focus encompasses research in physics, particularly nuclear reactions and particle interactions.
The individual has been recognized as a Fellow of the American Physical Society (APS) in 1983. This distinction was awarded with a citation acknowledging excellence in the measurements and interpretations of nuclear reactions induced by light heavy ions, as well as the study of pion production by protons near threshold.
While there are no specific papers, co-authors, or detailed publication venues listed, the award citation sheds light on their areas of expertise. The work on nuclear reactions induced by light heavy ions involves the study of interactions between energetic ions and nuclei, which is a significant topic within nuclear physics.
Another highlighted field is pion production by protons near threshold, an area associated with subatomic particle production in proton-nucleus collisions at energies close to the minimum required for producing pions. This research is relevant for understanding fundamental nuclear force interactions.
The scholar's academic contributions have been concentrated around these themes, reflecting a research trajectory engaged with experimental and theoretical aspects of nuclear and particle physics.
J. Adams;M. M. Aggarwal;Z. Ahammed;J. Amonett
K. H. Ackermann;N. Adams;C. Adler;Z. Ahammed
B. I. Abelev;M. M. Aggarwal;Z. Ahammed;B. D. Anderson
C. Adler;Z. Ahammed;C. Allgower;J. Amonett
J. Adams;C. Adler;M. M. Aggarwal;Z. Ahammed
J. Adams;C. Adler;M. M. Aggarwal;Z. Ahammed
K. H. Ackermann;N. Adams;C. Adler;Z. Ahammed
J. Adams;M. M. Aggarwal;Z. Ahammed;J. Amonett
C. Adler;Z. Ahammed;C. Allgower;J. Amonett
J. Adams;C. Adler;M. M. Aggarwal;Z. Ahammed
B. I. Abelev;M. M. Aggarwal;Z. Ahammed;B. D. Anderson
J. Adams;C. Adler;M. M. Aggarwal;Z. Ahammed
B. I. Abelev;J. Adams;M. M. Aggarwal;Z. Ahammed
C. Adler;Z. Ahammed;C. Allgower;J. Amonett
B. I. Abelev;M. M. Aggarwal;Z. Ahammed;A. V. Alakhverdyants
C. Adler;Z. Ahammed;C. Allgower;J. Amonett
Adams J;Adler C;Aggarwal Mm;Ahammed Z
M. Beddo;E. Bielick;T. Fornek;V. Guarino
B. I. Abelev;M. M. Aggarwal;Z. Ahammed;B. D. Anderson
J. Adams;C. Adler;M. M. Aggarwal;Z. Ahammed
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