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Published December 1, 1981 | public
Journal Article Open

Prompt emission of nucleon jets in time-dependent Hartree-Fock collisions

Abstract

The prompt emission of fact nucleon jets is calculated in the time-dependent Hartree-Fock approximation for 16O+93Nb collisions at Elab=204 MeV. The emission time is independent of the entrance channel angular momentum and is approximately equal to the time needed for projectile nucleons to traverse the target without interacting. The mean laboratory velocity, scattering angle, and particle number of the jet are calculated and interpreted in terms of a zero temperature Fermi gas model. The neutron multiplicity in the jet in coincidence with deep inelastic scattering is found to be consistent with recent experimental measurements. NUCLEAR REACTIONS 16O+93Nb at ELab=204 MeV in the time dependent Hartree-Fock approximation. Single nucleon emission with fusion and deep inelastic scattering.

Additional Information

©1981 The American Physical Society Received 29 May 1981 This work was supported in part by the National Science Foundation under contract PHY77-21602 at Caltech, the Division of Basic Energy Sciences, U.S. Department of Energy under Contract W-7405-ENG-26 with the Union Carbide Corporation, under Contract AC02-76ER03074 with Yale University, and the U.K. Science Research Council. The computations were performed on the Cray-1 computer at the SRC Daresbury Laboratory. S.E. Koonin is an Alfred P. Sloan Foundation Fellow.

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August 22, 2023
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