Difference between revisions of "DU target n-multiple scatter"
Jump to navigation
Jump to search
Line 5: | Line 5: | ||
[[File:DU_4mm_1MeVn.png | 500px]] | [[File:DU_4mm_1MeVn.png | 500px]] | ||
− | [[File: | + | [[File:DU#_4mm_1MeVn_theta.png | 500px]] |
[[File:DU_4mm_07MeVn.png | 500px]] | [[File:DU_4mm_07MeVn.png | 500px]] | ||
− | [[File: | + | [[File:DU#_4mm_07MeVn_theta.png | 500px]] |
Line 16: | Line 16: | ||
[[File:DU_2mm_1MeVn.png | 500px]] | [[File:DU_2mm_1MeVn.png | 500px]] | ||
− | [[File: | + | [[File:DU#_2mm_1MeVn_theta.png | 500px]] |
'''1 mm thick DU''' | '''1 mm thick DU''' | ||
Line 22: | Line 22: | ||
[[File:DU_1mm_1MeVn.png | 500px]] | [[File:DU_1mm_1MeVn.png | 500px]] | ||
− | [[File: | + | [[File:DU#_1mm_1MeVn_theta.png | 500px]] |
Revision as of 15:21, 8 September 2014
Neutron multiple scattering due to elastic collisions inside DU target and corresponding energy losses were simulated. Also angular distribution was obtained for the neutrons outside of the target. The angle was measured w.r.t. the initial beam direction. The neutron beam was pencil-like w/o divergence monoenergetic (1 MeV) and incident normally to the surface of DU target.
neutrons were initially incident upon the target.4 mm thick DU
2 mm thick DU
1 mm thick DU