Abstract
We have performed an experimental study of the angular and momentum distributions of fragments emitted from central collisions between emulsion nuclei (AgBr) and heavy-ion projectiles $^{4}\mathrm{He}$, $^{16}\mathrm{O}$, and $^{40}\mathrm{Ar}$ at beam rigidity 5.72 GV. Central collisions are here defined as interactions that exhibit an absence of projectile fragmentation, i.e., no beam-velocity fragments are produced within 5\ifmmode^\circ\else\textdegree\fi{} of the incident beam direction. Production angles have been measured for all fragments having a restricted gain density $g\ensuremath{\ge}2{g}_{min}$, corresponding to protons of $E\ensuremath{\le}250$ MeV. Both range and angle measurements have been made for fragment ranges \ensuremath{\le}4 mm, corresponding to protons of $E\ensuremath{\le}31$ MeV. The data are analyzed in terms of a modified Maxwell-Boltzmann distribution from which we obtain estimates of the longitudinal velocity ${\ensuremath{\beta}}_{\ensuremath{\parallel}}$ and the characteristic spectral volocity ${\ensuremath{\beta}}_{0}$ of the particle-emitting systems. We find that no unique Maxwellian distribution can account for the observed fragment distributions. The angular distributions do not display statistically significant structure attributable to collective phenomena.NUCLEAR REACTIONS $\mathrm{AgBr}(^{4}\mathrm{He},x)$, $E=2.1$ GeV/A; $\mathrm{AgBr}(^{16}\mathrm{O},x)$, $E=2.1$ GeV/A; and $\mathrm{AgBr}(^{40}\mathrm{Ar},x)$, $E=1.8$ GeV/A; measured fragment multiplicities; range and angular distributions for ranges \ensuremath{\le}4 mm (${E}_{\mathrm{proton}}\ensuremath{\le}31$ MeV); angular distribution for ${E}_{\mathrm{proton}}\ensuremath{\le}250$ MeV. Nonperipheral collisions, Maxwell-Boltzmann parametrization.
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