非线性振动腔中的动态卡西米尔效应

L. A. Akopyan, D. A. Trunin
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引用次数: 8

摘要

运动方程中的非线性项会导致相关函数的环修正异常增长。最近,这种修正被证明会影响非均匀运动的理想镜产生的粒子。我们将这一结论推广到理想振动腔和单半透明镜的情况。这些模型提供了自然的红外和紫外尺度,并允许更准确地研究环路行为。在这两种情况下,我们都证实了Keldysh传播算子的双环校正随时间二次增长。这种增长表明半经典近似的破裂,并强调在大的演化时间内,动态卡西米尔效应中的体非线性不能被忽略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamical Casimir effect in nonlinear vibrating cavities
Nonlinear terms in the equations of motion can induce secularly growing loop corrections to correlation functions. Recently such corrections were shown to affect the particle production by a nonuniformly moving ideal mirror. We extend this conclusion to the cases of ideal vibrating cavity and single semitransparent mirror. These models provide natural IR and UV scales and allow a more accurate study of the loop behavior. In both cases we confirm that two-loop correction to the Keldysh propagator quadratically grows with time. This growth indicates a breakdown of the semiclassical approximation and emphasizes that bulk nonlinearities in the dynamical Casimir effect cannot be neglected for large evolution times.
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