论文标题

远程多体相互作用和在被困的Rydberg离子链中的三体抗块

Long-range multi-body interactions and three-body anti-blockade in a trapped Rydberg ion chain

论文作者

Gambetta, Filippo Maria, Zhang, Chi, Hennrich, Markus, Lesanovsky, Igor, Li, Weibin

论文摘要

被困的Rydberg离子代表了一个灵活的平台,用于量子模拟和信息处理,该平台结合了对电子和振动自由度的高度控制。单独激发离子到高覆盖的Rydberg水平的可能性提供了一个系统,可以通过外部激光场对激发离子对之间进行较强而长距离的相互作用进行设计和调整。我们表明,Rydberg对相互作用与集体运动模式之间的耦合产生了有效的远程多体相互作用,包括两个,三个和四体术语。它们的形状,强度和范围可以通过离子陷阱参数来控制,并在很大程度上取决于离子晶体的平衡构型和振动模式。通过专注于$ {}^{}^{88} \ Mathrm {sr}^+ $ rydberg ions的实验可行的准一维设置,我们证明了多体相互作用通过与结构相过渡相关的软模式的出现来增强。这对多体电子状态和结果(例如三体抗块状效应)产生了惊人的影响。我们的研究表明,被困的Rydberg离子提供了新的机会来研究由增强的多体相互作用驱动的异国情调多体量子动力学。

Trapped Rydberg ions represent a flexible platform for quantum simulation and information processing which combines a high degree of control over electronic and vibrational degrees of freedom. The possibility to individually excite ions to high-lying Rydberg levels provides a system where strong and long-range interactions between pairs of excited ions can be engineered and tuned via external laser fields. We show that the coupling between Rydberg pair interactions and collective motional modes gives rise to effective long-range multi-body interactions, consisting of two, three, and four-body terms. Their shape, strength, and range can be controlled via the ion trap parameters and strongly depends on both the equilibrium configuration and vibrational modes of the ion crystal. By focusing on an experimentally feasible quasi one-dimensional setup of $ {}^{88}\mathrm{Sr}^+ $ Rydberg ions, we demonstrate that multi-body interactions are enhanced by the emergence of a soft mode associated, e.g., with a structural phase transition. This has a striking impact on many-body electronic states and results, for example, in a three-body anti-blockade effect. Our study shows that trapped Rydberg ions offer new opportunities to study exotic many-body quantum dynamics driven by enhanced multi-body interactions.

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