Quenching of single-particle strengths in direct reactions
Author(s) -
J. Manfredi,
J. Lee,
A. M. Rogers,
M. B. Tsang,
W. G. Lynch,
Carl E. Anderson,
J. Barney,
K. W. Brown,
B. Brophy,
G. Cerizza,
Z. Chajȩcki,
G. Chen,
J. M. Elson,
J. Estee,
H. Iwasaki,
C. Langer,
Zhi Li,
C. Loelius,
C. Y. Niu,
C. D. Pruitt,
H. Setiawan,
R. H. Showalter,
K. Smith,
L. G. Sobotka,
S. Sweany,
S. Tangwancharoen,
J. Winkelbauer,
Zhiguang Xiao,
Z. Y. Xu
Publication year - 2021
Publication title -
physical review. c
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.679
H-Index - 235
eISSN - 2469-9993
pISSN - 2469-9985
DOI - 10.1103/physrevc.104.024608
Subject(s) - physics , beryllium , nuclear reaction , nucleon , quenching (fluorescence) , atomic physics , asymmetry , nuclear physics , nuclear structure , work (physics) , range (aeronautics) , inverse , fluorescence , particle physics , thermodynamics , materials science , quantum mechanics , composite material , geometry , mathematics
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