论文标题

连续体在核直接反应与一维晕核的核直接反应中:一个维模型

Role of continuum in nuclear direct reactions with one-neutron halo nuclei: a one-dimensional model

论文作者

Moschini, Laura, Moro, Antonio M., Vitturi, Andrea

论文摘要

我们研究了另一个井在一个维电位孔碰撞过程中单个粒子波函数的演变,可以将其视为一个简单的模型,用于由另一个核被另一个核散射一个单中子晕核的问题。这构成了一个有效的三体问题,其在三个维度上的解决方案可能非常复杂,尤其是在考虑分解和重排通道时。我们的一维模型提供了此问题的基本三体性质,并允许对不同解决方案方法进行更简单的应用和评估。为了进一步简化问题,我们假设代表弹丸的电势会根据预定的经典轨迹移动,尽管“价”粒子的内部运动是用机械机械的。这对应于散射问题的半经典方法。研究了不同的方法,以了解涉及单体晕样系统的动力学:将Schrödinger方程的“精确”时间依赖性解决方案与数值连续性二式串联耦合通道(CC)计算,呈现出各种模型情况,包括不同的反应通道。该框架使我们能够讨论连续体的反应机制和作用,即使初始状态和最终状态良好,在CC计算结果中包含在CC计算结果中至关重要。我们还将每个动态情况与在三维(3D)CC框架中解决的类似问题联系起来,讨论了通常的3D模型中经历的主要挑战。

We study the evolution of a single-particle wave function during the collision of a one dimensional potential well by another well, which can be regarded as a simple model for the problem of the scattering of a one-neutron halo nucleus by another nucleus. This constitutes an effective three-body problem, whose solution in three dimensions can be extremely complicated, particularly when breakup and rearrangement channels are to be considered. Our one-dimensional model provides the essential three-body nature of this problem, and allows for a much simpler application and assessment of different methods of solution. To simplify further the problem, we assume that the potential well representing the projectile moves according to a predetermined classical trajectory, although the internal motion of the "valence" particle is treated fully quantum-mechanically. This corresponds to a semiclassical approach of the scattering problem. Different approaches are investigated to understand the dynamics involving one-body halo-like systems: the "exact" time-dependent solution of the Schrödinger equation is compared to a numerical continuum-discretized coupled-channels (CC) calculation presenting various model cases including different reaction channels. This framework allows us to discuss the reaction mechanism and the role of continuum, whose inclusion in the CC calculation results to be crucial to reproduce the "exact" solution, even when the initial and final states are well bound. We also link each dynamical situation with analogous problem solved in a three dimensional (3D) CC framework, discussing the main challenges experienced in the usual 3D models.

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