论文标题

穿过永恒的可穿越的虫洞

Tunneling through an Eternal Traversable Wormhole

论文作者

Zhou, Tian-Gang, Zhang, Pengfei

论文摘要

Maldacena-QI模型描述了Sachdev-Ye-Kitaev模型的两个副本,并添加了额外的耦合,并且与Jackiw-teitelboim重力双重,该重力在低温限制中表现出永恒的可扭转虫洞。在这项工作中,我们通过考虑MALDACENA-QI模型的隧道光谱法研究了可遍历虫洞的实验结果。与散装几何形状断开的高温黑洞相相比,我们发现隧道概率和低温虫孔相中的差异电导率都表现出非平凡的振荡,这直接提供了基础$ \ persatation operatation $ \ persatateNornArname {sl}(2)$对称性的底层$ \ persimenty $ symmetry n of the Bulkmmetry的底层签名。我们还在高温和低温阶段执行批量计算,这与边界量子理论的结果相匹配。

The Maldacena-Qi model describes two copies of the Sachdev-Ye-Kitaev model coupled with an additional coupling, and is dual to the Jackiw-Teitelboim gravity which exhibits an eternal traversable wormhole in the low-temperature limit. In this work, we study an experimental consequence of the existence of the traversable wormhole by considering the tunneling spectroscopy for the Maldacena-Qi model. Comparing to the high-temperature black hole phase where the bulk geometry is disconnected, we find that both the tunneling probability and the differential conductance in the low-temperature wormhole phase show non-trivial oscillation, which directly provides an unambiguous signature of the underlying $\operatorname{SL}(2)$ symmetry of the bulk geometry. We also perform bulk calculations in both high and low-temperature phases, which match the results from the boundary quantum theory.

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