Target dependence of central rapidity Λ production in sulfur-nucleus collisions at 200 GeV/cper nucleon
Author(s) -
E. Andersen,
P. D. Barnes,
R. Blaes,
H. M. Braun,
J.-M. Brom,
B. Castaño,
M. Cherney,
M D Cohler,
B. De La Cruz,
G. Diebold,
Christian Fernandéz,
G. Franklin,
C. Garabatos,
J. A. Garzón,
W. Geist,
D. Greiner,
C. Gruhn,
M. Hafidouni,
J. Hrubec,
D. Huss,
J.L. Jacquot,
Peter G. Jones,
J.P.M. Kuipers,
M. Ladrem,
P. Ladrón de Guevara,
D. Liko,
S. Lopez-Ponte,
G. Løvhøiden,
J. MacNaughton,
C. Maher,
A. Michalon,
M.E. Michalon-Mentzer,
J. Mosquera,
Z. Natkaniec,
J. M. Nelson,
G. Neuhofer,
C. Pérez de los Heros,
M. Pló,
P. Porth,
B. Powell,
B. Quinn,
A. Ramil,
J.L. Riester,
H. Rohringer,
G. Sakrejda,
I. Sakrejda,
T.F. Thorsteinsen,
John Traxler,
C. Voltolini,
A. Yáñez,
P. Yepes,
R. Zybert
Publication year - 1992
Publication title -
physical review c
Language(s) - English
Resource type - Journals
eISSN - 1089-490X
pISSN - 0556-2813
DOI - 10.1103/physrevc.46.727
Subject(s) - rapidity , physics , nucleon , nuclear physics , collision , impact parameter , projectile , kinetic energy , venus , nucleus , time projection chamber , particle physics , production (economics) , function (biology) , atomic physics , hadron , electron , astrobiology , computer security , macroeconomics , quantum mechanics , computer science , economics , biology , microbiology and biotechnology , evolutionary biology
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