Shannon information entropy in heavy-ion collisions

被引:97
|
作者
Ma, Chun-Wang [1 ]
Ma, Yu-Gang [2 ]
机构
[1] Henan Normal Univ, Inst Particle & Nucl Phys, Xinxiang, Peoples R China
[2] Chinese Acad Sci, Shanghai Inst Appl Phys, Beijing, Peoples R China
基金
中国国家自然科学基金;
关键词
Shannon information entropy; Nuclear liquid-gas transition; Nuclear reaction model; Asymmetric nucleus; Heavy ion physics; ANTISYMMETRIZED MOLECULAR-DYNAMICS; PERIPHERAL AU+AU COLLISIONS; CHARM HADRON PROPERTIES; DEPENDENT HARTREE-FOCK; ISOBARIC YIELD RATIO; GAS PHASE-TRANSITION; N-BODY APPROACH; MULTIPARTICLE PRODUCTION; PARTICLE-PRODUCTION; CRITICAL-BEHAVIOR;
D O I
10.1016/j.ppnp.2018.01.002
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
The general idea of information entropy provided by C.E. Shannon "hangs over every-thing we do" and can be applied to a great variety of problems once the connection between a distribution and the quantities of interest is found. The Shannon information entropy essentially quantify the information of a quantity with its specific distribution, for which the information entropy based methods have been deeply developed in many scientific areas including physics. The dynamical properties of heavy-ion collisions (HICs) process make it difficult and complex to study the nuclear matter and its evolution, for which Shannon information entropy theory can provide new methods and observables to understand the physical phenomena both theoretically and experimentally. To better understand the processes of HICs, the main characteristics of typical models, including the quantum molecular dynamics models, thermodynamics models, and statistical models, etc., are briefly introduced. The typical applications of Shannon information theory in HICs are collected, which cover the chaotic behavior in branching process of hadron collisions, the liquid-gas phase transition in HICs, and the isobaric difference scaling phenomenon for intermediate mass fragments produced in HICs of neutron-rich systems. Even though the present applications in heavy-ion collision physics are still relatively simple, it would shed light on key questions we are seeking for. It is suggested to further develop the information entropy methods in nuclear reactions models, as well as to develop new analysis methods to study the properties of nuclear matters in HICs, especially the evolution of dynamics system. (C) 2018 Elsevier B.V. All rights reserved.
引用
收藏
页码:120 / 158
页数:39
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