Testing the Paradigm of Nuclear Many-Body Theory

O. Benhar
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引用次数: 3

Abstract

Nuclear many-body theory is based on the tenet that nuclear systems can be accurately described as collections of point-like particles. This picture, while providing a remarkably accurate explanation of a wealth of measured properties of atomic nuclei, is bound to break down in the high-density regime, in which degrees of freedom other than protons and neutrons are expected to come into play. Valuable information on the validity of the description of dense nuclear matter in terms of nucleons, needed to firmly establish its limit of applicability, can be obtained from electron–nucleus scattering data at large momentum transfer and low energy transfer. The emergence of y-scaling in this kinematic region, unambiguously showing that the beam particles couple to high-momentum nucleons belonging to strongly correlated pairs, indicates that at densities as large as five times nuclear density—typical of the neutron star interior—nuclear matter largely behaves as a collection of nucleons.
核多体理论范式的检验
核多体理论是基于这样一个原则:核系统可以精确地描述为点状粒子的集合。这幅图虽然对大量被测量到的原子核性质提供了非常准确的解释,但在高密度状态下必然会崩溃,因为在高密度状态下,除了质子和中子之外的自由度预计会起作用。从大动量传递和低能量传递的电子-核散射数据中可以获得关于用核子描述致密核物质的有效性的宝贵信息,这些信息需要牢固地确定其适用性的极限。在这个运动区域出现的y标度,明确地表明束粒子与属于强相关对的高动量核子偶联,表明在密度高达核密度的五倍时-中子星内部的典型-核物质在很大程度上表现为核子的集合。
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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