Binding energies of hypernuclei and Λ‐nuclear interactions

A. Bodmer, Q. N. Usmani
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Abstract

In part 1 the effect of nuclear core dynamics on the binding energies of {Lambda} hypernuclei is discussed in the framework of variational correlated wave functions. In particular, the authors discuss a new rearrangement energy contribution and its effect on the core polarization. In part 2 they consider the interpretation of the {Lambda} single-particle energy in terms of basic {Lambda}-nuclear interactions using a local density approximation based on a Fermi hypernetted chain calculation of the A binding to nuclear matter. To account for the data strongly repulsive 3-body {Lambda}NN forces are required. Also in this framework they discuss core polarization for medium and heavier hypernuclei.
超核结合能与Λ -核相互作用
第一部分在变分相关波函数的框架下讨论了核芯动力学对{Lambda}超核结合能的影响。特别讨论了一种新的重排能贡献及其对核心极化的影响。在第二部分中,他们考虑了{Lambda}单粒子能量的基本{Lambda}-核相互作用的解释,使用基于a与核物质结合的费米超网状链计算的局部密度近似。为了解释这些数据,需要强排斥性的三体{Lambda}神经网络力。他们也在这个框架中讨论了中、重超核的核极化。
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