2009•Chinese Physics LettersOpen access

Isospin Effects on Anisotropic Flows in Intermediate Energy Heavy Ion Collisions

Ting-Zhi Yan, Hu Si-Ke, Guo Wen-Xue, Wang Sheng-Long, Xu Jin-Ping

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Abstract

Anisotropic flows per nucleon (v 1 /A, v 2 /A, v 3 /A and v 4 /A) of light fragments up to the mass number 4 as a function of transverse momentum per nucleon are studied for 55 MeV/nucleon 58 Fe+ 58 Fe and 58 Ni+ 58 Ni at large impact parameters by the isospin-dependent quantum molecular dynamics model. The effects of symmetry energy and nucleon-nucleon cross sections, which are both isospin-dependent on anisotropic flows, are studied in detail. In comparison of the two systems with or without symmetry potential term, the results show that the strength of flows is sensitive to symmetry potential and nucleon-nucleon cross sections, which mainly cause a repulsion effect in this energy region.

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Anisotropic flows per nucleon (v 1 /A, v 2 /A, v 3 /A and v 4 /A) of light fragments up to the mass number 4 as a function of transverse momentum per nucleon are studied for 55 MeV/nucleon 58 Fe+ 58 Fe and 58 Ni+ 58 Ni at large impact parameters by the isospin-dependent quantum molecular dynamics model. The effects of symmetry energy and nucleon-nucleon cross sections, which are both isospin-dependent on anisotropic flows, are studied in detail. In comparison of the two systems with or without symmetry potential term, the results show that the strength of flows is sensitive to symmetry potential and nucleon-nucleon cross sections, which mainly cause a repulsion effect in this energy region.

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Available abstract

Anisotropic flows per nucleon (v 1 /A, v 2 /A, v 3 /A and v 4 /A) of light fragments up to the mass number 4 as a function of transverse momentum per nucleon are studied for 55 MeV/nucleon 58 Fe+ 58 Fe and 58 Ni+ 58 Ni at large impact parameters by the isospin-dependent quantum molecular dynamics model. The effects of symmetry energy and nucleon-nucleon cross sections, which are both isospin-dependent on anisotropic flows, are studied in detail. In comparison of the two systems with or without symmetry potential term, the results show that the strength of flows is sensitive to symmetry potential and nucleon-nucleon cross sections, which mainly cause a repulsion effect in this energy region.

Key concepts: Physics, Isospin, Nucleon, Anisotropy, Symmetry (geometry), Heavy ion, Nuclear physics, Transverse plane

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