论文标题

平面引力波的标量传播器

Scalar propagator for planar gravitational waves

论文作者

van Haasteren, Rens, Prokopec, Tomislav

论文摘要

我们为在Minkowski空间传播的平面引力波背景构造了巨大的标量传播器。我们用贝塞尔(Bessel)的函数来代表传播器的适当变形的非局部距离函数,这是由重力波引起的变形。我们计算了非极化的传播器,用于($+$)和cross($ \ times $)极化平面波,以及更通用的平面波,都在$ d $ d $时空尺寸中。在相互作用的量子场的背景下,传播器可用于研究平面引力波背景上标量场的相互作用,在这种量子场中,重新归一化起着至关重要的作用。作为传播器的简单应用,我们计算了单循环的有效作用,标量自我相互作用项和单环能量张量产生的标量质量通过使用尺寸正则化和重新归一化来重新归一化。虽然有效的作用和标量质量仍然不受重力波的影响,但能量弹药张量在引力波的方向上表现出能量的流动,该引力波与标量场质量,重力波振幅及其频率相互四次增长。

We construct the massive scalar propagator for planar gravitational wave backgrounds propagating on Minkowski space. We represent the propagator in terms of the Bessel's function of suitably deformed nonlocal distance functions, the deformation being caused by gravitational waves. We calculate the propagator both for nonpolarized, for the plus ($+$) and cross ($\times$) polarized plane waves, as well as for more general planar waves both in $D$ space-time dimensions. The propagator is useful for studying interactions of scalar fields on planar gravitational wave backgrounds in the context of interacting quantum fields, in which renormalization plays a crucial role. As simple applications of the propagator we calculate the one-loop effective action, the scalar mass generated by the scalar self-interaction term and the one-loop energy-momentum tensor, all renormalized by using dimensional regularization and renormalization. While the effective action and scalar mass remain unaffected by gravitational waves, the energy-momentum tensor exhibits flow of energy density in the direction of gravitational waves which grows quadratically with the scalar field mass, gravitational wave amplitude and its frequency.

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