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基于高对比度硅基掺锗二氧化硅微环谐振器的连续可调谐光子分数希尔伯特变换器

Continuously tunable photonic fractional Hilbert transformer using a high-contrast germanium-doped silica-on-silicon microring resonator.

作者信息

Shahoei Hiva, Dumais Patrick, Yao Jianping

出版信息

Opt Lett. 2014 May 1;39(9):2778-81. doi: 10.1364/OL.39.002778.

Abstract

We propose and experimentally demonstrate a continuously tunable fractional Hilbert transformer (FHT) based on a high-contrast germanium-doped silica-on-silicon (SOS) microring resonator (MRR). The propagation loss of a high-contrast germanium-doped SOS waveguide can be very small (0.02 dB/cm) while the lossless bend radius can be less than 1 mm. These characteristics lead to the fabrication of an MRR with a high Q-factor and a large free-spectral range (FSR), which is needed to implement a Hilbert transformer (HT). The SOS MRR is strongly polarization dependent. By changing the polarization direction of the input signal, the phase shift introduced at the center of the resonance spectrum is changed. The tunable phase shift at the resonance wavelength can be used to implement a tunable FHT. A germanium-doped SOS MRR with a high-index contrast of 3.8% is fabricated. The use of the fabricated MRR for the implementation of a tunable FHT with tunable orders at 1, 0.85, 0.95, 1.05, and 1.13 for a Gaussian pulse with the temporal full width at half-maximum of 80 ps is experimentally demonstrated.

摘要

我们提出并通过实验证明了一种基于高对比度掺锗硅基二氧化硅(SOS)微环谐振器(MRR)的连续可调分数阶希尔伯特变换器(FHT)。高对比度掺锗SOS波导的传播损耗可以非常小(0.02 dB/cm),而无损弯曲半径可以小于1 mm。这些特性使得能够制造出具有高Q因子和大自由光谱范围(FSR)的MRR,这是实现希尔伯特变换器(HT)所必需的。SOS MRR具有很强的偏振依赖性。通过改变输入信号的偏振方向,共振光谱中心处引入的相移会发生变化。共振波长处的可调相移可用于实现可调FHT。制造了具有3.8%高折射率对比度的掺锗SOS MRR。实验证明了所制造的MRR用于实现针对半高全宽为80 ps的高斯脉冲、阶数分别为1、0.85、0.95、1.05和1.13的可调FHT。

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