Off-diagonal coupling of supersymmetric SYK model

Chenhao Zhang, Wenhe Cai
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Abstract

In this work, we consider the off-diagonal coupling between two supersymmetric SYK models, which preserves both supersymmetry and solvability. We found that the interaction terms of the N=2 supersymmetric SYK have a holographic interpretation as a possible supersymmetric traversable wormhole. First we introduce the coupling in the trivial Homologic N=1 SYK model as a simplified example. Similar couplings can be implied in N=2 chiral SYK model with BPS states. We propose a special form of N=4 SYK by introducing supermultiplets, and which also naturally include the coupling terms. The holographic picture of N=4 SYK does not have an eternal solution in the low energy limit. And the effective actions are studied in both thermal limit and low energy limit. We also investigate the SYK-like thermal field double states of the supersymmetric SYK and the transmission amplitude between single-side N=2 models in Lorentz time. Additionally, the multi-side N=2,4 OTOCs are also studied.
超对称 SYK 模型的非对角耦合
在这项工作中,我们考虑了两个超对称SYK模型之间的对角线外耦合,它同时保留了超对称性和可解性。我们发现N=2超对称SYK的相互作用项具有全息解释,即可能的超对称可穿越虫洞。类似的耦合也可以隐含在具有BPS态的N=2手性SYK模型中。我们提出了一种特殊形式的 N=4 SYK,它引入了超多子,也自然包含了耦合项。N=4 SYK的全息图像在低能极限并没有永恒解。我们同时研究了热极限和低能极限的有效作用。我们还研究了超对称SYK的类SYK热场双态以及洛伦兹时间中单侧N=2模型之间的传输振幅。此外,我们还研究了多面 N=2,4 OTOCs。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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