论文标题

人工原子的崩溃和复兴与结构化光子储层相连

Collapse and Revival of an Artificial Atom Coupled to a Structured Photonic Reservoir

论文作者

Ferreira, Vinicius S., Banker, Jash, Sipahigil, Alp, Matheny, Matthew H., Keller, Andrew J., Kim, Eunjong, Mirhosseini, Mohammad, Painter, Oskar

论文摘要

结构化的电磁储层会导致量子发射器的新动力学。特别是,与典型开放系统的无记忆的马尔可夫动力学相反,可以量身定制储层以使其对与发射器的过去相互作用进行记忆。在本文中,我们研究了一个超导量子量子的非马克维亚动力学,并与超导慢的波导储层强烈耦合。将Qubit调节到该波导的通带的光谱附近,我们发现非指数的能量松弛以及量子排放速率的实质变化。此外,在波导的一端添加反射边界后,我们观察到量子群的复兴时间比量子排放速率的倒数长30倍,这对应于发射光子的往返行程时间。通过调整Qubit-波导的相互作用强度,我们探测了Markovian和非Markovian Qubit发射动力学之间的交叉。这些属性还允许对与结构化储层相连的多Qubit电路的未来研究,此外还构成了产生多霍顿高度纠缠状态的必要资源。

A structured electromagnetic reservoir can result in novel dynamics of quantum emitters. In particular, the reservoir can be tailored to have a memory of past interactions with emitters, in contrast to memory-less Markovian dynamics of typical open systems. In this Article, we investigate the non-Markovian dynamics of a superconducting qubit strongly coupled to a superconducting slow-light waveguide reservoir. Tuning the qubit into the spectral vicinity of the passband of this waveguide, we find non-exponential energy relaxation as well as substantial changes to the qubit emission rate. Further, upon addition of a reflective boundary to one end of the waveguide, we observe revivals in the qubit population on a timescale 30 times longer than the inverse of the qubit's emission rate, corresponding to the round-trip travel time of an emitted photon. By tuning of the qubit-waveguide interaction strength, we probe a crossover between Markovian and non-Markovian qubit emission dynamics. These attributes allow for future studies of multi-qubit circuits coupled to structured reservoirs, in addition to constituting the necessary resources for generation of multiphoton highly entangled states.

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