Abstract

In many applications, double-differential (energy and angle) secondary light particle production cross sections must be known for ion energies from tens of MeV/nucleon to tens of GeV/nucleon. Incorporating high energy light particle spectral and angular distribution cross section databases in the transport codes enable them to transport nearly any radiation field, in three dimensions, that humans and instruments might be exposed to in space, near accelerators or during charged particle radiotherapy. In this work a thermodynamics coalescence model is used to estimate the coalescence and emitting source radii for both symmetric and asymmetric heavy ion collision systems.

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