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频谱亲吻及其在挤压驱动克尔振荡器中的动力学后果。

Spectral kissing and its dynamical consequences in the squeeze-driven Kerr oscillator.

作者信息

Chávez-Carlos Jorge, Lezama Talía L M, Cortiñas Rodrigo G, Venkatraman Jayameenakshi, Devoret Michel H, Batista Victor S, Pérez-Bernal Francisco, Santos Lea F

机构信息

Department of Physics, University of Connecticut, Storrs, CT 06269 USA.

Department of Physics, Yeshiva University, New York, NY 10016 USA.

出版信息

npj Quantum Inf. 2023;9(1):76. doi: 10.1038/s41534-023-00745-1. Epub 2023 Jul 28.

Abstract

Transmon qubits are the predominant element in circuit-based quantum information processing, such as existing quantum computers, due to their controllability and ease of engineering implementation. But more than qubits, transmons are multilevel nonlinear oscillators that can be used to investigate fundamental physics questions. Here, they are explored as simulators of excited state quantum phase transitions (ESQPTs), which are generalizations of quantum phase transitions to excited states. We show that the spectral kissing (coalescence of pairs of energy levels) experimentally observed in the effective Hamiltonian of a driven SNAIL-transmon is an ESQPT precursor. We explore the dynamical consequences of the ESQPT, which include the exponential growth of out-of-time-ordered correlators, followed by periodic revivals, and the slow evolution of the survival probability due to localization. These signatures of ESQPT are within reach for current superconducting circuits platforms and are of interest to experiments with cold atoms and ion traps.

摘要

跨导量子比特由于其可控性和易于工程实现,是基于电路的量子信息处理(如现有的量子计算机)中的主要元素。但跨导量子比特不仅仅是量子比特,它们还是多能级非线性振荡器,可用于研究基本物理问题。在这里,它们被用作激发态量子相变(ESQPT)的模拟器,ESQPT是量子相变到激发态的推广。我们表明,在驱动的SNAIL跨导量子比特的有效哈密顿量中实验观察到的谱吻(能级对的合并)是ESQPT的前兆。我们探索了ESQPT的动力学后果,包括无序关联函数的指数增长,随后是周期性复苏,以及由于局域化导致的生存概率的缓慢演化。ESQPT的这些特征在当前的超导电路平台上是可以实现的,并且对冷原子和离子阱实验具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/628e/11041765/0edb1388f147/41534_2023_745_Fig1_HTML.jpg

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