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Adiabatic elimination-based coupling control in densely packed subwavelength waveguides

机译:密堆积亚波长波导中基于绝热消除的耦合控制

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The ability to control light propagation in photonic integrated circuits is at the foundation of modern light-based communication. However, the inherent crosstalk in densely packed waveguides and the lack of robust control of the coupling are a major roadblock toward ultra-high density photonic integrated circuits. As a result, the diffraction limit is often considered as the lower bound for ultra-dense silicon photonics circuits. Here we experimentally demonstrate an active control of the coupling between two closely packed waveguides via the interaction with a decoupled waveguide. This control scheme is analogous to the adiabatic elimination, a well-known procedure in atomic physics. This approach offers an attractive solution for ultra-dense integrated nanophotonics for light-based communications and integrated quantum computing.
机译:控制光子集成电路中光传播的能力是现代基于光的通信的基础。然而,在密集堆积的波导中固有的串扰以及对耦合的缺乏鲁棒的控制是通往超高密度光子集成电路的主要障碍。结果,衍射极限通常被认为是超致密硅光子电路的下限。在这里,我们通过实验证明了通过与解耦波导的相互作用对两个紧密堆积的波导之间的耦合进行的主动控制。该控制方案类似于绝热消除,这是原子物理学中众所周知的程序。这种方法为基于光的通信和集成量子计算的超密集集成纳米光子学提供了一种有吸引力的解决方案。

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