Momentum Distribution Studies of Projectile Fragments from Peripheral Collisions Below the Fermi Energy

O. Fasoula, G. Souliotis, S. Koulouris, Konstantina Palli, M. Veselský, Sherry J. Jenello, A. Bonasera
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Abstract

This paper presents our recent studies of multinucleon transfer in peripheral collisions in reactions below the Fermi regime. Our current focus is the study of the mass, angular and momentum distributions of the projectile-like fragments from the reaction of an 86Kr beam at 15 MeV/nucleon with a target of 64Ni. Experimental data from our previous work with the MARS spectrometer at the Cyclotron Institute of Texas A&M University were compared with model calculations. The dynamical stage of the reaction is described with either the Deep-Inelastic Transfer Model (DIT) or with the microscopic Constrained Molecular Dynamics model (CoMD). The de-excitation of the hot projectile-like fragments is performed with the GEMINI model. The momentum distributions are characterized by a quasi-elastic peak and a deep-inelastic peak. Two-body kinematics was employed to extract the total excitation energies of these regions. Through the thorough study of peripheral reactions in the Fermi energy regime we expect to gain valuable information that could lead to the understanding of how the rare isotopes in regions such as the r-process path and the neutron drip line are formed and the reaction mechanism(s) that take place.
费米能量以下外围碰撞弹丸碎片动量分布研究
本文介绍了我们在费米区以下反应的外围碰撞中的多核子转移的最新研究。我们目前的重点是研究15mev /核子下86Kr束与64Ni靶的反应产生的弹丸状碎片的质量、角动量和动量分布。我们之前在德克萨斯农工大学回旋加速器研究所用火星光谱仪进行的实验数据与模型计算进行了比较。反应的动力学阶段用深度非弹性传递模型(DIT)或微观约束分子动力学模型(CoMD)来描述。用GEMINI模型对热类弹丸破片进行了消激。动量分布具有准弹性峰和深非弹性峰的特征。采用二体运动学方法提取这些区域的总激励能。通过对费米能量域外周反应的深入研究,我们期望获得有价值的信息,可以帮助我们理解r过程路径和中子滴线等区域的稀有同位素是如何形成的,以及发生的反应机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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