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Polariton Exchange Interactions in Multichannel Optical Networks

机译:多通道光网络中的极化子交换相互作用

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摘要

We examine the dynamics of Rydberg polaritons with dipolar interactions that propagate in multiple spatial modes. The dipolar excitation exchange between different Rydberg states mediates an effective exchange between polaritons that enables photons to hop across different spatial channels. Remarkably, the efficiency of this photon exchange process can increase with the channel distance and becomes optimal at a finite rail separation. Based on this mechanism, we design a simple photonic network that realizes a two photon quantum gate with a robust pi phase, protected by the symmetries of the underlying photon interaction and the geometry of the network. These capabilities expand the scope of Rydberg electromagnetically induced transparency towards multidimensional geometries for nonlinear optical networks and explorations of photonic many-body physics.
机译:我们研究了在多个空间模式下传播的偶极子相互作用的里德堡极化子的动力学。不同里德堡状态之间的偶极激发交换介导了极化子之间的有效交换,使光子能够跳越不同的空间通道。值得注意的是,这种光子交换过程的效率会随着通道距离的增加而增加,并在有限的轨道间隔处变得最佳。基于这种机制,我们设计了一个简单的光子网络,该网络可实现具有鲁棒pi相位的两个光子量子门,并受到基础光子相互作用的对称性和网络几何形状的保护。这些功能将Rydberg电磁感应的透明性的范围扩展到了用于非线性光学网络和光子多体物理学探索的多维几何形状。

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