Physical significance of generalized boundary conditions: an Unruh-DeWitt detector viewpoint on
arXiv:2210.02395 · doi:10.1016/j.physletb.2022.137597
Abstract
On , we construct the two-point correlation functions for the ground and thermal states of a real Klein-Gordon field admitting generalized -boundary conditions. We follow the prescription recently outlined in [1] for two different choices of secondary solutions. For each of them, we obtain a family of admissible boundary conditions parametrized by . We study how they affect the response of a static Unruh-DeWitt detector. The latter not only perceives variations of , but also distinguishes between the two families of secondary solutions in a qualitatively different, and rather bizarre, fashion. Our results highlight once more the existence of a freedom in choosing boundary conditions at a timelike boundary which is greater than expected and with a notable associated physical significance.
9 pages, 2 figs, 1 table
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