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首页> 外文期刊>Applied optics >How small can a microring resonator be and yet be polarization independent?
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How small can a microring resonator be and yet be polarization independent?

机译:微环谐振器可以是多小,而且偏振无关?

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摘要

There has been a recent trend to reduce the size of photonic waveguide devices to enable high-density integration in silicon photonic integrated circuits. However, this miniaturization tends to result in increased polarization dependency. Particularly challenging is designing devices based on ring waveguides with small radii, which exacerbates the polarization sensitivity. For these microring resonators, a legitimate question is then: Is it possible to simultaneously maintain the conditions of single-mode and structural polarization independence while shrinking the size of both the bend radius and the waveguide cross section, and, if so, how small can the ring resonator be? We demonstrate theoretically the feasibility of achieving this via deeply etched submicrometer silicon-on-insulator rib waveguides, and we show that, for a given cladding and core thickness, the radius of a polarization independent microring resonator can be as small as 3 (mu)m, being limited chiefly by the residual birefringence of the resonator cavity and the bend losses.
机译:最近的趋势是减小光子波导装置的尺寸以实现硅光子集成电路中的高密度集成。然而,这种小型化趋向于导致偏振依赖性增加。尤其具有挑战性的是设计基于半径小的环形波导的设备,这会加剧偏振灵敏度。对于这些微环谐振器,那么一个合理的问题是:是否可以同时保持单模和结构极化独立性的条件,同时缩小弯曲半径和波导横截面的大小,如果可以,可以缩小多小?环形谐振器是?我们从理论上证明了通过深蚀刻亚微米级绝缘体上硅肋形波导实现这一目标的可行性,并且我们表明,对于给定的包层和芯厚度,偏振无关的微环谐振器的半径可以小至3(μ) m,主要受谐振腔残余双折射和弯曲损耗的限制。

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