Published June 1995 | Version v1
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Extension of QMD to the relativistic region and the calculation of proton induced reactions

Creators

  • 1. Research Organization for Information Science and Technology, Tokai, Ibaraki (Japan)

Description

When quantum molecular dynamics (QMD) is applied to the nuclear reactions in theory of relativity region, a number of problems arise, and in order to solve them, the prescription of the extension of ordinary nonrelativistic QMD is introduced, and the analysis of proton incidence reaction by using it is shown. By introducing the interaction corresponding to Lorentz transformation, the problems were solved. QMD is the semiclassical simulation that treats the motion of nucleons represented by Gauss wave packet. The motion of wave packet center is expressed by Newton equations and two-nucleon collision. The introduction of the interaction corresponding to Lorentz transformation is explained. As the result of the introduction, through the relative distance of two particles, the interaction becomes to depend on momentum. The phase distribution function of one body corresponding to Lorentz transformation is used for calculating the final state Pauli effect of collision term. The energy conservation in collision term and Lorentz boost are discussed. The calculations of proton incidence reactions, that is, p+27Al and p+208Pb are reported. (K.I.)

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Part of:
Proceedings of the second symposium on simulation of hadronic many-body system

Additional details

Publishing Information

Imprint Title
Proceedings of the second symposium on simulation of hadronic many-body system
Imprint Pagination
148 p.
Journal Page Range
p. 133-140.
Report number
JAERI-Conf--95-012

Conference

Title
2. symposium on simulation of hadronic many-body system.
Dates
30 Nov - 2 Dec 1994.
Place
Tokai, Ibaraki (Japan).

Optional Information