Scalar field theory under Robin boundary conditions: two-point function and energy-momentum tensor

David Dudal, Aaron Gobeyn, Bruno W. Mintz, Thomas Oosthuyse, Sebbe Stouten
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Abstract

We reconsider four-dimensional scalar field theory in presence of Robin boundary conditions on two parallel plates. These boundary conditions are directly imposed in the path integral definition of the theory via auxiliary fields living on the plates. We discuss how this leads to boundary corrections to the standard energy momentum tensor operator. Via a dimensional reduction to an effective three-dimensional boundary theory, we compute the Casimir energy in terms of the plate separation and the two Robin parameters, as well as the scalar field propagator in the presence of the plates. Coincidentally, the boundary contribution vanishes in the expectation value for the vacuum energy, thereby giving results in full accordance with other energy expressions in the literature for the same setup. We also discuss for which values of the Robin parameters this energy is real-valued.
罗宾边界条件下的标量场理论:两点函数和能动张量
我们重新考虑了在两个平行板上存在罗宾边界条件的四维标量场理论。这些边界条件通过生活在板上的辅助场直接强加在理论的路径积分定义中。我们将讨论这如何导致对标准能量动量张量算子的边界修正。通过对有效三维边界理论的维度还原,我们计算了板块分离和两个罗宾参数的卡西米尔能,以及板块存在时的标量场传播者。巧合的是,边界贡献在真空能的期望值中消失了,因此得出的结果与文献中针对相同设置的其他能量表达式完全一致。我们还讨论了这种能量在哪些罗宾参数值下是实值。
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