Decomposition of the sensitivity of the symmetry energy observables

Decomposition of the sensitivity of the symmetry energy observables
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DOI:
10.1103/physrevc.91.044609
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发表时间:
2014-06
期刊:
影响因子:
3.1
通讯作者:
He-Lei Liu;G. Yong;Dehua Wen
He-Lei Liu;G. Yong;Dehua Wen
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
He-Lei Liu;G. Yong;Dehua Wen

文献摘要

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为了准确回答一些常用的能量敏感观测量探测到的密度区域,首次对能量敏感观测量的灵敏度分解进行了研究。结果表明,对于入射能量为200和400 MeV/核子的Au+Au反应,常用的能量敏感观测量主要探测1.25 $\rho {0}$(对于介子观测量)或1.5 $\rho {0}$(对于核子观测量)附近的密度依赖对称能.在低密度区的对称能的影响一般是小的,但可观察到的。在最大重子密度区,重子能敏感观测量对对称能不敏感,这增加了研究超密度核对称能的难度。
To exactly answer which density region that some frequently used symmetry-energy-sensitive observables probe, for the first time, we make a study of decomposition of the sensitivity of some symmetry-energy-sensitive observables. It is found that for the Au+Au reaction at incident beam energies of 200 and 400 MeV/nucleon, frequently used symmetry-energy-sensitive observables mainly probe the density-dependent symmetry energy around 1.25$\rho_{0}$ (for pionic observables) or 1.5$\rho_{0}$ (for nucleonic observables). Effects of the symmetry energy in the low-density region is in general small but observable. The fact that the symmetry-energy-sensitive observables are not sensitive to the symmetry energy in the maximal baryon-density region increases the difficulty of studying nuclear symmetry energy at super-density.