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Description of Charge Radii in Halo Nuclei within the Gamow Shell Model

机译:Gamow壳模型中Halo Nuclei中的充电半径的描述

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The charge radius of the halo nucleus 6He is studied within the framework of the Gamow Shell Model (GSM). The charge radius carries information about the size of the neutron halo, the recoil of the core, and the effective interaction between valence nucleons. The motivation for this work stems from the precise measurements of charge radii in 6,8He, I I Li, and 11~Be. For these weakly bound nuclei, the proper treatment of the particle continuum turns out to be crucial. The GSM is a tool that can properly account for the coupling of the continuum space (of both resonant and scattering character) with that of the bound states. We use a GSM Hamiltonian written explicitly in intrinsic coordinates. This guarantees that the core recoil effect is properly described and the spurious center-of-mass motion is removed. According to our calculations for 6He, the charge radius is very sensitive to (i) the halo extent given by the two-neutron separation energy of the system, and (ii) the P_(3/2) occupation. In particular, we show that the two-body wave function of halo neutrons in 6He should contain 91% of a P_(3/2) partial wave to reproduce the charge radius. This observation will help us to construct a GSM effective interaction on the interface of p and sd shells that is needed to describe other halo systems.
机译:晕核的核6He电荷半径伽莫夫壳模型(GSM)的框架内的研究。电荷半径携带关于中子晕的大小,所述芯的后坐力,和价核子之间的有效交互信息。这项工作的动机来自于6,8He负责半径,我我李的精确测量茎,11〜定。对于这些弱结合的核,该颗粒连续体的适当的治疗结果是至关重要的。在GSM是一个工具,可以正确地考虑连续空间的耦合(包括谐振和散射性质的)与结合的状态。我们使用的固有坐标明确写入一个GSM哈密尔顿。这保证了芯反冲效应被适当地描述,而且乱真中心的质量运动被除去。根据我们对计算核6He,电荷半径是与(i)由该系统的两个中子分离能量,并且(ii)所述P_(3/2)占用给定的晕程度非常敏感。特别是,我们表明,在晕核6He中子的两体波函数应包含一个P_(3/2)分波的91%以再现电荷半径。这一观察结果将帮助我们构建需要来形容对方晕系统p和SD壳的接口上的GSM有效互动。

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