2002
DOI: 10.1103/physrevc.65.037601
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Fusion window problem in time-dependent Hartree-Fock theory revisited

Abstract: Head-on collisions of 16 Oϩ 16 O are calculated using an extended version of the time-dependent Hartree-Fock theory known as the time-dependent density-matrix theory ͑TDDM͒. TDDM deals with both one-body and two-body dissipation in a quantum-mechanical way. A newly developed TDDM code, which includes spin-orbit force in a mean field, is used. It is found that the threshold energy above which the colliding nuclei do not fuse increases due to two-body dissipation. Head-on collisions of 22 Oϩ 22 O are also calcul… Show more

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Cited by 33 publications
(79 citation statements)
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“…By comparing with the standard TDHF calculations, an increase of the fluctuations has been found and the agreement with experimental data has been much improved. The two-body dissipation arising from nucleon-nucleon collisions has been taken into account in a quantum mechanical way with the extended TDHF [25,26] or time-dependent density matrix (TDDM) approaches [27][28][29]. So far only a few studies on the dynamical fluctuation and two-body dissipation have been implemented because beyond TDHF calculations require a lot of numerical efforts and computational time.…”
Section: Introductionmentioning
confidence: 99%
“…By comparing with the standard TDHF calculations, an increase of the fluctuations has been found and the agreement with experimental data has been much improved. The two-body dissipation arising from nucleon-nucleon collisions has been taken into account in a quantum mechanical way with the extended TDHF [25,26] or time-dependent density matrix (TDDM) approaches [27][28][29]. So far only a few studies on the dynamical fluctuation and two-body dissipation have been implemented because beyond TDHF calculations require a lot of numerical efforts and computational time.…”
Section: Introductionmentioning
confidence: 99%
“…This is done for instance in the Time-Dependent Density Matrix theory (TDDM) where both the one-body density matrix and the two-body correlation operator are followed in time [28]. These theories are however rarely applied due to the large number of degrees of freedom to consider [29].…”
Section: A Generalities On Perturbation Theory and Stochastic Mechanicsmentioning
confidence: 99%
“…Realistic calculations for those approaches are limited so far to light systems and low energies [16][17][18].…”
Section: Dynamic Modelsmentioning
confidence: 99%