激发
原子物理学
物理
多模光纤
Atom(片上系统)
光子
双光子激发显微术
束缚态
量子力学
光学
光纤
计算机科学
嵌入式系统
作者
Claudia Castillo-Moreno,Kazi Rafsanjani Amin,Ingrid Strandberg,Mikael Kervinen,Amr Osman,Simone Gasparinetti
标识
DOI:10.1103/physrevlett.134.133601
摘要
Atom-photon bound states arise from the coupling of quantum emitters to the band edge of dispersion-engineered waveguides. Thanks to their tunable-range interactions, they are promising building blocks for quantum simulators. Here, we study the dynamics of an atom-photon bound state emerging from coupling a frequency-tunable quantum emitter—a transmon-type superconducting circuit—to the band edge of a microwave metamaterial. Employing precise temporal control over the frequency detuning of the emitter from the band edge, we examine the transition from adiabatic to nonadiabatic behavior in the formation of the bound state and its melting into the propagating modes of the metamaterial. Moreover, we experimentally observe multimode emission from the bound state, triggered by a fast change of the emitter’s frequency. Our Letter offers insight into the dynamic preparation of APBS and provides a method to characterize their photonic content, with implications in quantum optics and quantum simulation. Published by the American Physical Society 2025
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