Landau–Zener without a qubit: multiphoton sidebands interaction and signatures of dissipative quantum chaos

IF 6.6 1区 物理与天体物理 Q1 PHYSICS, APPLIED
Léo Peyruchat, Fabrizio Minganti, Marco Scigliuzzo, Filippo Ferrari, Vincent Jouanny, Franco Nori, Vincenzo Savona, Pasquale Scarlino
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Abstract

Landau–Zener–Stückelberg–Majorana (LZSM) interference occurs when qubit parameters are periodically modulated across avoided level crossings. We explore this phenomenon in nonlinear multilevel bosonic systems, where interference is influenced by multiple energy levels. We fabricate two superconducting resonators with flux-tunable Josephson junction arrays. The first device, exhibiting weak nonlinearity, behaves like a linear resonator under weak driving but shows LZSM interference akin to two-level systems. With stronger driving, nonlinear effects alter the interference pattern. We theoretically demonstrate that merging LZSM peaks can lead to dissipative quantum chaos. In the second device, where nonlinearity exceeds photon-loss rates, we observe additional LZSM peaks from Kerr multiphoton resonances. Under Floquet theory, these resonances represent synthetic modes of coupled nonlinear cavities, revealing effective coupling as modulation parameters vary. Our findings advance the understanding of LZSM physics and emphasize the control of nonlinear Floquet states and the emergence of chaos in engineered systems, with significant implications for novel applications in quantum dynamics and quantum control.

Abstract Image

无量子位元的朗道-齐纳:多光子边带相互作用与耗散量子混沌的特征
当量子比特参数在避免的能级交叉点上受到周期性调制时,就会产生朗道-齐纳-斯图尔伯格-马约拉纳(LZSM)干扰。我们探讨了非线性多级玻色子系统中的这一现象,其中干扰受到多个能级的影响。我们制造了两个具有通量可调约瑟夫森结阵列的超导谐振器。第一个器件表现出弱非线性,在弱驱动下表现得像线性谐振器,但却出现了类似于两级系统的 LZSM 干涉。在较强的驱动下,非线性效应会改变干扰模式。我们从理论上证明,合并 LZSM 峰值会导致耗散量子混沌。在第二个器件中,非线性超过了光子损耗率,我们观察到来自克尔多光子共振的额外 LZSM 峰。根据 Floquet 理论,这些共振代表了耦合非线性空腔的合成模式,揭示了调制参数变化时的有效耦合。我们的发现推进了对 LZSM 物理的理解,并强调了非线性 Floquet 状态的控制和工程系统中混沌的出现,对量子动力学和量子控制的新应用具有重要意义。
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来源期刊
npj Quantum Information
npj Quantum Information Computer Science-Computer Science (miscellaneous)
CiteScore
13.70
自引率
3.90%
发文量
130
审稿时长
29 weeks
期刊介绍: The scope of npj Quantum Information spans across all relevant disciplines, fields, approaches and levels and so considers outstanding work ranging from fundamental research to applications and technologies.
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