论文标题

强烈相互作用的Rydberg合奏中的多体辐射衰减

Many-body radiative decay in strongly interacting Rydberg ensembles

论文作者

Nill, Chris, Brandner, Kay, Olmos, Beatriz, Carollo, Federico, Lesanovsky, Igor

论文摘要

当原子激发到高凹进的rydberg时,它们与偶极力强烈相互作用。由此产生的状态依赖性级别的变化允许研究表现出令人着迷的非平衡现象的多体系统,例如约束旋转系统,并且是众多技术应用的核心,例如在量子模拟和计算平台中。在这里,我们表明,这些相互作用也对由于Rydberg原子与周围电磁场的不可避免的耦合引起的耗散效应产生了重大影响。我们证明它们的存在会修饰从Rydberg原子发出的光子的频率,从而依赖于发射原子的局部邻域。因此,在rydberg原子之间的相互作用将自发的发射变成了多体的过程,在热力学一致的马尔可夫环境中,在量子主机中的集体跳跃操作员的出现中,表现出了量子跳动算子的出现,该方程构成了动力学。我们讨论了这种集体耗散是如何与研究的超级和副税不同的机制造成的 - 加速了变质并影响Rydberg集合的耗散相变。

When atoms are excited to high-lying Rydberg states they interact strongly with dipolar forces. The resulting state-dependent level shifts allow to study many-body systems displaying intriguing nonequilibrium phenomena, such as constrained spin systems, and are at the heart of numerous technological applications, e.g., in quantum simulation and computation platforms. Here, we show that these interactions have also a significant impact on dissipative effects caused by the inevitable coupling of Rydberg atoms to the surrounding electromagnetic field. We demonstrate that their presence modifies the frequency of the photons emitted from the Rydberg atoms, making it dependent on the local neighborhood of the emitting atom. Interactions among Rydberg atoms thus turn spontaneous emission into a many-body process which manifests, in a thermodynamically consistent Markovian setting, in the emergence of collective jump operators in the quantum master equation governing the dynamics. We discuss how this collective dissipation - stemming from a mechanism different from the much studied super- and sub-radiance - accelerates decoherence and affects dissipative phase transitions in Rydberg ensembles.

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