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强磁场中弱相互作用费米气体的热力学性质
引用本文:门福殿,王炳福,何晓刚,隗群梅. 强磁场中弱相互作用费米气体的热力学性质[J]. 物理学报, 2011, 60(8): 80501-080501. DOI: 10.7498/aps.60.080501
作者姓名:门福殿  王炳福  何晓刚  隗群梅
作者单位:1. 中国石油大学(华东)物理科学与技术学院,东营 257061;2. 滨州学院物理系,滨州 256600
基金项目:山东省自然科学基金(批准号:ZR2010AL027)资助的课题.
摘    要:基于赝势法和局域密度近似研究了强磁场中弱相互作用费米气体的热力学性质,得出化学势、总能和热容量的解析式,同时分析了磁场及相互作用对系统热力学性质的影响.研究表明,无论是高温情况还是低温情况下,磁场都能调节相互作用的影响.低温下,与无磁场的系统相比,磁场降低系统的化学势、总能和热容量;与无相互作用系统相比,排斥作用增加化学势而降低总能及热容量.高温下,磁场和排斥作用均可降低系统的总能而增加热容量,强磁场可以改变相互作用对总能及热容量的影响.关键词:强磁场弱相互作用费米气体热力学性质

关 键 词:强磁场  弱相互作用  费米气体  热力学性质
收稿时间:2010-10-10

Thermodynamic properties of a weakly interacting Fermi gas in a strong magnetic field
Men Fu-Dian,Wang Bing-Fu,He Xiao-Gang and Wei Qun-Mei. Thermodynamic properties of a weakly interacting Fermi gas in a strong magnetic field[J]. Acta Physica Sinica, 2011, 60(8): 80501-080501. DOI: 10.7498/aps.60.080501
Authors:Men Fu-Dian  Wang Bing-Fu  He Xiao-Gang  Wei Qun-Mei
Affiliation:College of Physics Science and Technology, China University of Petroleum (East China), Dongying 257061, China;Department of Physics, Binzhou University, Binzhou 256600, China;College of Physics Science and Technology, China University of Petroleum (East China), Dongying 257061, China;College of Physics Science and Technology, China University of Petroleum (East China), Dongying 257061, China
Abstract:Based on the "pseudopotential" method and the local-density approximation, the thermodynamic properties of a weakly interacting Fermi gas in a strong magnetic filed are studied, the integrated analytical expressions of thermodynamic quantities of the system are derived, and the effects of magnetic field as well as interparticle interactions on the thermodynamic properties of the system are analyzed. It is shown that at both high and low temperatures, magnetic field may adjust the effects of interacting. At low temperatures, magnetic field can lower the chemical potential, total energy and heat capacity of the system compared with the situation of Fermi gas in the absence of the magnetic field. The repulsive interactions may increase the chemical potential, but reduce the total energy and heat capacity of the system compared with the situation of non-interacting Fermi gas. At high temperatures, magnetic field as well as repulsive interactions can reduce the total energy and increase heat capacity of the system, moreover, strong magnetic field may change the effects of interaction on the total energy and the heat capacity of the system.
Keywords:strong magnetic field  weakly interacting  Fermi gas  thermodynamic property
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