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Transport model studies on the fast fission of the target-like fragments in heavy ion collisions

机译:重离子碰撞中目标样碎片快速裂变的输运模型研究

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The fission of the target-like fragments (TLF) in heavy ion collisions (40Ar+197Au, b=8 fm) at beam energies from 20 to 40 MeV/u has been studied by an improved quantum molecular dynamics model (ImQMD). The time scale at a few 100 fm/c (10?21s) of the TLF fission is consistent with the picture that fast fission occurs. The dynamic feature of the fast fission is illustrated by the mass asymmetry and the angular distribution of the fission axis. The effect of the surface energy coefficient and the beam energy on the dynamic feature of the fission is demonstrated. At higher beam energy, or with larger surface energy coefficient, the mass asymmetry of the fission fragments is larger and the angular distribution of the fission axis shows a more pronounced peak near beam direction, coincidentally the fission time scale is shorter. The variation suggests that the fission observables can be used as sensitive probes to the surface energy coefficient of nucleus. Irrelevant to the beam energy or the surface energy coefficient, the mean value of the relative velocity of the fission fragments situates in the vicinity of 2.4 cms, in accordance with the Viola systematics applied in statistic fission. This value can be used as a calibration constant in all heavy ion fission experiments. The studies demonstrate the applicability of the transport model in the description of fast fission as a large amplitude collective motion mode in heavy ion collisions.
机译:通过改进的量子分子动力学模型(ImQMD)研究了重离子碰撞(40Ar + 197Au,b = 8 fm)中束状能量为20至40 MeV / u时目标样碎片(TLF)的裂变。 TLF裂变的几百个fm / c(10?21s)的时间尺度与发生快速裂变的图像一致。裂变轴的质量不对称和角度分布说明了快速裂变的动态特征。证明了表面能系数和束能对裂变动力学特征的影响。在较高的束能量或具有较大的表面能系数的情况下,裂变碎片的质量不对称性较大,并且裂变轴的角度分布在束方向附近显示出更明显的峰值,同时裂变时间尺度较短。该变化表明裂变观测物可用作对核的表面能系数的敏感探针。根据统计裂变中应用的维奥拉系统,裂变碎片相对速度的平均值与束能量或表面能系数无关,均位于2.4 cm / ns附近。该值可以在所有重离子裂变实验中用作校准常数。研究证明了传输模型在快速裂变描述中的适用性,该裂变是重离子碰撞中的大振幅集体运动模式。

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