TENDL-2023 Nuclear data library

Gamma sub-library for Re (Z=75) and A=179: Tabulated production and total cross sections

Production and total cross sections
Reaction # Re(g,all) Re(g,x)a Re(g,x)d Re(g,x)g Re(g,x)he3 Re(g,non) Re(g,x)n Re(g,x)p Re(g,reac) Re(g,x)t
Reaction #
Partial cross sections
Reaction # Re(g,g) Re(g,a) Re(g,2a) Re(g,3a)
Reaction # Re(g,He3) Re(g,He3+a) Re(g,He3+2a) Re(g,t)
Reaction # Re(g,t+a) Re(g,t+2a) Re(g,t+He3) Re(g,t+He3+a)
Reaction # Re(g,d) Re(g,d+a) Re(g,d+2a) Re(g,d+He3)
Reaction # Re(g,d+He3+a) Re(g,d+t) Re(g,d+t+a) Re(g,2d)
Reaction # Re(g,2d+a) Re(g,2d+t) Re(g,p) Re(g,p+a)
Reaction # Re(g,p+2a) Re(g,p+He3) Re(g,p+He3+a) Re(g,p+t)
Reaction # Re(g,p+t+a) Re(g,p+t+2a) Re(g,p+t+He3) Re(g,p+d)
Reaction # Re(g,p+d+a) Re(g,p+d+2a) Re(g,p+d+He3) Re(g,p+d+t)
Reaction # Re(g,p+2d) Re(g,p+2d+a) Re(g,2p) Re(g,2p+a)
Reaction # Re(g,2p+2a) Re(g,2p+He3) Re(g,2p+t) Re(g,2p+t+a)
Reaction # Re(g,2p+d) Re(g,2p+d+a) Re(g,3p) Re(g,3p+a)
Reaction # Re(g,3p+t) Re(g,3p+d) Re(g,4p) Re(g,n)
Reaction # Re(g,n+a) Re(g,n+2a) Re(g,n+3a) Re(g,n+He3)
Reaction # Re(g,n+He3+a) Re(g,n+He3+2a) Re(g,n+t) Re(g,n+t+a)
Reaction # Re(g,n+t+2a) Re(g,n+t+He3) Re(g,n+d) Re(g,n+d+a)
Reaction # Re(g,n+d+2a) Re(g,n+d+He3) Re(g,n+d+t) Re(g,n+d+t+a)
Reaction # Re(g,n+2d) Re(g,n+2d+a) Re(g,n+p) Re(g,n+p+a)
Reaction # Re(g,n+p+2a) Re(g,n+p+He3) Re(g,n+p+He3+a) Re(g,n+p+t)
Reaction # Re(g,n+p+t+a) Re(g,n+p+d) Re(g,n+p+d+a) Re(g,n+p+d+t)
Reaction # Re(g,n+p+2d) Re(g,n+2p) Re(g,n+2p+a) Re(g,n+2p+2a)
Reaction # Re(g,n+2p+He3) Re(g,n+2p+t) Re(g,n+2p+d) Re(g,n+2p+d+a)
Reaction # Re(g,n+3p) Re(g,n+3p+a) Re(g,n+3p+d) Re(g,n+4p)
Reaction # Re(g,2n) Re(g,2n+a) Re(g,2n+2a) Re(g,2n+3a)
Reaction # Re(g,2n+He3) Re(g,2n+He3+a) Re(g,2n+t) Re(g,2n+t+a)
Reaction # Re(g,2n+t+2a) Re(g,2n+t+He3) Re(g,2n+d) Re(g,2n+d+a)
Reaction # Re(g,2n+d+2a) Re(g,2n+d+He3) Re(g,2n+d+t) Re(g,2n+2d)
Reaction # Re(g,2n+p) Re(g,2n+p+a) Re(g,2n+p+2a) Re(g,2n+p+He3)
Reaction # Re(g,2n+p+t) Re(g,2n+p+t+a) Re(g,2n+p+d) Re(g,2n+p+d+a)
Reaction # Re(g,2n+p+2d) Re(g,2n+2p) Re(g,2n+2p+a) Re(g,2n+2p+t)
Reaction # Re(g,2n+2p+d) Re(g,2n+3p) Re(g,2n+3p+a) Re(g,2n+4p)
Reaction # Re(g,3n) Re(g,3n+a) Re(g,3n+2a) Re(g,3n+3a)
Reaction # Re(g,3n+He3) Re(g,3n+He3+a) Re(g,3n+t) Re(g,3n+t+a)
Reaction # Re(g,3n+d) Re(g,3n+d+a) Re(g,3n+2d) Re(g,3n+p)
Reaction # Re(g,3n+p+a) Re(g,3n+p+2a) Re(g,3n+p+He3) Re(g,3n+p+t)
Reaction # Re(g,3n+p+d) Re(g,3n+2p) Re(g,3n+2p+a) Re(g,3n+2p+d)
Reaction # Re(g,3n+3p)