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Thermofield dynamics and Casimir effect for fermions

机译:费米子的热场动力学和卡西米尔效应

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A generalization of the Bogoliubov transformation is developed to describe a space compactified fermionic field. The method is the fermionic counterpart of the formalism introduced earlier for bosons [Phys. Rev. A 66 (2002) 052101], and is based on the thermofield dynamics approach. We analyze the energy-momentum tensor for the Casimir effect of a free massless fermion field in a d-dimensional box at finite temperature. As a particular case the Casimir energy and pressure for the field confined in a three-dimensional parallelepiped box are calculated. It is found that the attractive or repulsive nature of the Casimir pressure on opposite faces changes depending on the relative magnitude of the edges. We also determine the temperature at which the Casimir pressure in a cubic box changes sign and estimate its value when the edge of the cube is of the order of the confining lengths for baryons. (c) 2004 Elsevier Inc. All rights reserved.
机译:Bogoliubov变换的一般化被开发来描述空间压缩的费米电子场。该方法是先前针对玻色子引入的形式主义的费米离子对应物[Phys。 Rev.A 66(2002)052101],并且基于热场动力学方法。我们分析了有限温度下d维箱中自由无质量费米子场的卡西米尔效应的能量动量张量。作为一种特殊情况,计算了卡西米尔能量和压力,该能量和压力被限制在三维平行六面体的盒子中。已经发现,卡西米尔压力在相反面上的吸引或排斥性质根据边缘的相对大小而变化。我们还可以确定立方箱中卡西米尔压力改变符号的温度,并在立方体的边缘处于重子的限制长度量级时估计其值。 (c)2004 Elsevier Inc.保留所有权利。

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