2018
DOI: 10.1103/physrevc.97.034331
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Level structure in the transitional nucleus Tl199

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Cited by 11 publications
(26 citation statements)
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“…Besides the nuclear mean-field potential, a short range stochastic scattering between two particles is also necessary in the transport model to compensate the strong repulsive short-range component of the nuclear interaction. It is well known that the in-medium nucleon-nucleon elastic cross section should be smaller than the free one [49][50][51]. Thus, in the present version of the UrQMD model, a density and momentum dependent in-medium correction factor on the free elastic cross section is applied.…”
Section: The Urqmd Modelmentioning
confidence: 99%
“…Besides the nuclear mean-field potential, a short range stochastic scattering between two particles is also necessary in the transport model to compensate the strong repulsive short-range component of the nuclear interaction. It is well known that the in-medium nucleon-nucleon elastic cross section should be smaller than the free one [49][50][51]. Thus, in the present version of the UrQMD model, a density and momentum dependent in-medium correction factor on the free elastic cross section is applied.…”
Section: The Urqmd Modelmentioning
confidence: 99%
“…In addition, comparing the triaxial deformation in RMF approach without rotation in Ref. [30], it is found that considering or without considering the rotational mean field, i.e., the TAC-RMF and RMF calculations both support the existence of chirality in 125,127,129,131 Cs.…”
Section: Theoretical Calculationmentioning
confidence: 98%
“…On the other hand, the adiabatic and configuration-fixed constrained triaxial relativistic mean-field (RMF) approach has been performed to study the triaxial deformation of odd-A 125,127,129,131 Cs [30]. The existence of chirality, especially the MχD phenomenon, is demonstrated and expected based on different high-j particle-hole configurations and triaxial deformations.…”
Section: Introductionmentioning
confidence: 99%
“…The UrQMD model has been widely and successfully used to study pp, pA, and AA collisions within a large energy range from the Fermi energy up to the CERN Large Hadron Collider (LHC) energies [13,14]. It has been found that with a proper set of the in-medium nucleon-nucleon cross section, Pauli blocking, as well as the clustering process, the collective flow, stopping observable, as well as fragment mass distribution in intermediate energy HICs can be reproduced fairly well [15,16,17,18]. For studying HICs at intermediate energies, the following density and momentum dependent potential has been widely used [19,20,21],…”
Section: The Urqmd Model and Cumulants In Central Au+au Collision At mentioning
confidence: 99%