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The Casimir effect for fermions in one dimension

机译:一维费米子的卡西米尔效应

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We study the Casimir problem for a fermion coupled to a static background field in one space dimension. We examine the relationship between interactions and boundary conditions for the Dirac field. In the limit that the background becomes concentrated at a point (a "Dirac spike") and couples strongly, it implements a confining boundary condition. We compute the Casimir energy for a masslike background and show that it is finite for a stepwise continuous background field. However the total Casimir energy diverges for the Dirac spike. The divergence cannot be removed by standard renormalization methods. We compute the Casimir energy density of configurations where the background field consists of one or two sharp spikes and show that the energy density is finite except at the spikes. Finally we define and compute an interaction energy density and the force between two Dirac spikes as a function of the strength and separation of the spikes. (C) 2003 Elsevier Inc. All rights reserved. [References: 18]
机译:我们研究了在一个空间维度上耦合到静态背景场的费米子的卡西米尔问题。我们研究了狄拉克场的相互作用和边界条件之间的关系。在背景变得集中在一个点(“狄拉克尖峰”)并强烈耦合的极限下,它实现了限制边界条件。我们计算了类似质量背景的卡西米尔能量,并证明它对于连续连续背景场是有限的。但是,卡西米尔的总能量因狄拉克峰而发散。无法通过标准的重新规范化方法消除差异。我们计算了背景场由一个或两个尖峰组成的配置的卡西米尔能量密度,并表明除了尖峰以外,能量密度是有限的。最后,我们定义并计算了相互作用的能量密度和两个狄拉克尖峰之间的力,该强度是尖峰的强度和间距的函数。 (C)2003 Elsevier Inc.保留所有权利。 [参考:18]

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