Behrends Jan, Béri Benjamin
T.C.M. Group, Cavendish Laboratory, University of Cambridge, J.J. Thomson Avenue, Cambridge CB3 0HE, United Kingdom.
DAMTP, University of Cambridge, Wilberforce Road, Cambridge CB3 0WA, United Kingdom.
Phys Rev Lett. 2022 Mar 11;128(10):106805. doi: 10.1103/PhysRevLett.128.106805.
The Sachdev-Ye-Kitaev (SYK) model is an all-to-all interacting Majorana fermion model for many-body quantum chaos and the holographic correspondence. Here we construct fermionic all-to-all Floquet quantum circuits of random four-body gates designed to capture key features of SYK dynamics. Our circuits can be built using local ingredients in Majorana devices, namely, charging-mediated interactions and braiding Majorana zero modes. This offers an analog-digital route to SYK quantum simulations that reconciles all-to-all interactions with the topological protection of Majorana zero modes, a key feature missing in existing proposals for analog SYK simulation. We also describe how dynamical, including out-of-time-ordered, correlation functions can be measured in such analog-digital implementations by employing foreseen capabilities in Majorana devices.
萨赫德夫-叶-基塔耶夫(SYK)模型是一个用于多体量子混沌和全息对应关系的全对全相互作用的马约拉纳费米子模型。在此,我们构建了由随机四体门组成的费米子全对全弗洛凯量子电路,旨在捕捉SYK动力学的关键特征。我们的电路可以利用马约拉纳器件中的局部成分来构建,即充电介导的相互作用和编织马约拉纳零模。这为SYK量子模拟提供了一条模拟-数字途径,使全对全相互作用与马约拉纳零模的拓扑保护相协调,这是现有模拟SYK模拟方案中缺少的一个关键特征。我们还描述了如何通过利用马约拉纳器件中可预见的能力,在这种模拟-数字实现中测量动力学相关函数,包括时间反演序相关函数。