论文标题

jackiw-teitelboim重力中的被困重力波

Trapped Gravitational Waves in Jackiw-Teitelboim Gravity

论文作者

Bae, Jeong-Myeong, Ben-Dayan, Ido, Schiffer, Marcelo, Yun, Gibum, Zoe, Heeseung

论文摘要

我们讨论引力波动(“重力波”)被二维jackiw-teitelboim重力中的重力相互作用捕获的可能性。在标准的GEON(引力电磁实体)方法中,有效能量完全沉积在薄层中,即活跃区域,该区域可实现空间自我结构,并对Geon的稳定性产生了怀疑。在本文中,我们放弃了“主动区域”方法,并获得了被真空几何形状捕获的“重力波”的自我插入,并且由于度量波动而可以稳定。

We discuss the possibility that gravitational fluctuations ("gravitational-waves") are trapped in space by gravitational interactions in two dimensional Jackiw-Teitelboim gravity. In the standard geon (gravitational electromagnetic entity) approach, the effective energy is entirely deposited in a thin layer, the active region, that achieves spatial self-confinement and raises doubts about the geon's stability. In this paper we relinquish the "active region" approach and obtain self-confinement of "gravitational waves" that are trapped by the vacuum geometry and can be stable against the backreaction due to metric fluctuations.

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