Yi Xiaogen, Zhang Yibo, Chen Yu, Zhan Hengjie, Li Yunjie, Qiu Ciyuan
Opt Express. 2024 May 20;32(11):19792-19800. doi: 10.1364/OE.523121.
High-density silicon waveguide arrays manufactured on a complementary metal-oxide-semiconductor (CMOS)-foundry platform hold great promise for optical information processing and photonic integration. However, evanescent waves arising from nanoscale confinement would cause significant optical crosstalk in waveguide arrays, which remains a vital issue in various applications. Here, by utilizing silicon photonic nanohole metamaterials, we propose a scheme to greatly suppress the crosstalk in the devices and then demonstrate ultra-compact low-crosstalk waveguide arrays. For a 100-µm-long waveguide array at a half-wavelength pitch, low crosstalk of -19 dB can be obtained in a wide range of wavelengths (1500 nm-1580 nm). In the experimental demonstrations, our approach exhibits the ability to suppress the crosstalk over a broad bandwidth without substantially increasing the propagation loss as well as the promising design flexibility, which shall pave the way for metamaterials enabled high-density waveguide arrays.
在互补金属氧化物半导体(CMOS)代工平台上制造的高密度硅波导阵列在光学信息处理和光子集成方面具有巨大潜力。然而,由纳米级限制产生的倏逝波会在波导阵列中引起显著的光学串扰,这在各种应用中仍然是一个关键问题。在此,通过利用硅光子纳米孔超材料,我们提出了一种方案来大幅抑制器件中的串扰,进而展示了超紧凑的低串扰波导阵列。对于半波长间距的100μm长波导阵列,在宽波长范围(1500nm - 1580nm)内可获得-19dB的低串扰。在实验演示中,我们的方法展现出在不显著增加传播损耗的情况下在宽带宽内抑制串扰的能力以及良好的设计灵活性,这将为基于超材料的高密度波导阵列铺平道路。