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Casimir effect for lattice fermions

机译:格子费米子的Casimir效果

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We propose a definition of the Casimir energy for free lattice fermions. From this definition, we study the Casimir effects for the massless or massive naive fermion, Wilson fermion, and (M?bius) domain-wall fermion in1+1dimensional spacetime with the spatial periodic or antiperiodic boundary condition. For the naive fermion, we find an oscillatory behavior of the Casimir energy, which is caused by the difference between odd and even lattice sizes. For the Wilson fermion, in the small lattice size ofN≥3, the Casimir energy agrees very well with that of the continuum theory, which suggests that we can control the discretization artifacts for the Casimir effect measured in lattice simulations. We also investigate the dependence on the parameters tunable in M?bius domain-wall fermions. Our findings will be observed both in condensed matter systems and in lattice simulations with a small size.
机译:我们提出了对自由格子晶片的Casimir能量的定义。从这个定义,我们使用空间周期性或抗哌啶边界条件研究无大量或大规模天真的Fermion,Wilson Fermion和(M?Bius)域 - 壁射灯的Casimir效应。对于天真的Fermion,我们发现了Casimir能量的振荡行为,这是由奇数甚至晶格尺寸之间的差异引起的。对于威尔逊的Fermion,在≥3的小格子尺寸,Casimir能量与连续文学理论的相同意,这表明我们可以控制在晶格模拟中测量的Casimir效果的离散伪影。我们还研究了对M?BIUS域 - 墙壁池中可调的参数的依赖性。我们的发现将在凝聚态系统和晶格模拟中观察到小尺寸。

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