论文标题

rydberg激发和量子相关性的动力学与光子晶体波导相连

Dynamics of Rydberg excitations and quantum correlations in an atomic array coupled to a photonic crystal waveguide

论文作者

Chougale, Yashwant, Talukdar, Jugal, Ramos, Tomás, Nath, Rejish

论文摘要

我们研究了多达两种Rydberg激发的动力学以及与光子晶体波导耦合的原子链中的相关性生长。在此设置中,激发可以通过由波导介导的指数衰减的交换相互作用从一个原子跳到另一个原子。最初局部的激发经历了连续的量子步行,进行短距离跳跃,并且对于远程,它会经历准定位。除此之外,逆参与率还揭示了激发在短时间内的超级焊接扩散,而很长一段时间以来,它就会变得弹道。对于两种最初的局部激发,由于Rydberg-Rydberg与Exchange Itspethions之间的竞争,出现了不同的初始分离的有趣和复杂的动态场景。特别是,即使对于足够的远距离交换相互作用,两点相关也揭示了轻型的行为。此外,我们表征了两分纠缠熵的生长,如果动态中只有一种激发,则表现出全球结合。最后,我们分析了由于从rydberg状态自发发射到波导以外的光子的瑕疵的影响,并表明我们预测的所有物理现象都很好。

We study the dynamics of up to two Rydberg excitations and the correlation growth in a chain of atoms coupled to a photonic crystal waveguide. In this setup, an excitation can hop from one atom to another via exponentially decaying exchange interactions mediated by the waveguide. An initially localized excitation undergoes a continuous-time quantum walk for short-range hopping, and for long-range, it experiences quasi-localization. Besides that, the inverse participation ratio reveals a super-ballistic diffusion of the excitation in short times, whereas, at a long time, it becomes ballistic. For two initially localized excitations, intriguing, and complex dynamical scenarios emerge for different initial separations due to the competition between the Rydberg-Rydberg and exchange interactions. In particular, the two-point correlation reveals a light-cone behavior even for sufficiently long-range exchange interactions. Additionally, we characterize the growth of bipartite entanglement entropy, which exhibits a global bound if only one excitation is present in the dynamics. Finally, we analyze the effect of imperfections due to spontaneous emission from the Rydberg state into photons outside the waveguide and show that all physical phenomena we predict are well within experimental reach.

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