论文标题

各向异性亚波长度扰动使零串扰在漏水模式下

Anisotropic subwavelength grating perturbation enables zero crosstalk in a leaky mode

论文作者

Kabir, Md Faiyaz, Mia, Md Borhan, Ahmed, Ishtiaque, Jaidye, Nafiz, Ahmed, Syed Z., Kim, Sangsik

论文摘要

电磁耦合通过指数衰减的渐射场或辐射波是光的主要特征,它允许光学信号/功率传递,但限制了光子电路中的积分密度。泄漏的模式将evanscent场和辐射波均结合在一起,导致更强的串扰,因此并不理想地集成。在这里,我们表明,具有各向异性扰动的泄漏模式可以实现通过亚波长(SWG)超材料实现的完全零串扰。 SWG中的振荡场使每个方向的耦合系数相互抵消,从而完全零串扰。我们通过实验表明,与常规的脱衣舞指南相比,在紧密间隔相同的泄漏SWG波导之间表现出如此低的低耦合,将串扰抑制$ \ $ 40 dB,相对于$ \ \ $ \ $ \ $ \ $ \ $ \ $ \ $ \ $ \ $ \约100倍。这种泄漏的SWG抑制了横向磁性(TM)模式的串扰,由于其低约束,这是具有挑战性的,并且标志着适用于其他光谱状态和通用设备的电磁耦合的新方法。

Electromagnetic coupling via either exponentially decaying evanescent field or radiative wave is a primary characteristic of light, allowing optical signal/power transfer but limiting integration density in a photonic circuit. A leaky mode combines both evanescent field and radiative wave, causing stronger crosstalk and thus not ideal for dense integration. Here we show that a leaky mode with anisotropic perturbation rather can achieve completely zero crosstalk realized by subwavelength grating (SWG) metamaterials. The oscillating fields in the SWGs enable coupling coefficients in each direction to counteract each other, resulting in completely zero crosstalk. We experimentally demonstrate such an extraordinarily low coupling between closely spaced identical leaky SWG waveguides, suppressing the crosstalk by $\approx$40 dB compared to conventional strip waveguides, corresponding to $\approx$100 times longer coupling length. This leaky-SWG suppresses the crosstalk of transverse-magnetic (TM) mode, which is challenging due to its low confinement, and marks a novel approach in electromagnetic coupling applicable to other spectral regimes and generic devices.

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