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通过长度收缩进行相位调谐。

Phase tuning by length contraction.

作者信息

Jin Warren, Polcawich Ronald G, Morton Paul A, Bowers John E

出版信息

Opt Express. 2018 Feb 5;26(3):3174-3187. doi: 10.1364/OE.26.003174.

Abstract

Typical integrated optical phase tuners alter the effective index. In this paper, we explore tuning by geometric deformation. We show that tuning efficiency, Vπ L, improves as the device size shrinks down to the optimal bend radius, contrary to conventional index-shift based approaches where Vπ L remains constant. We demonstrate that this approach is capable of ultra-low power tuning across a full FSR in a low-confinement silicon nitride based ring resonator of 580 μm radius. We demonstrate record performance with V = 16 V, Vπ L = 3.6 V dB, Vπ Lα = 1.1 V dB, tuning current below 10 nA, and unattenuated tuning response up to 1 MHz. We also present optimized designs for high confinement silicon nitride and silicon based platforms with radius down to 80 μm and 45 μm, respectively, with performance well beyond current state-of-the-art. Applications include narrow-linewidth tunable diode lasers for spectroscopy and non-linear optics, optical phased array beamforming networks for RF antennas and LIDAR, and optical filters for WDM telecommunication links.

摘要

典型的集成光学相位调谐器会改变有效折射率。在本文中,我们探索通过几何变形进行调谐。我们表明,与基于传统折射率变化的方法(其中VπL保持恒定)相反,随着器件尺寸缩小到最佳弯曲半径,调谐效率VπL会提高。我们证明,这种方法能够在半径为580μm的低限制氮化硅基环形谐振器中,在整个自由光谱范围(FSR)内实现超低功耗调谐。我们展示了创纪录的性能,V = 16 V,VπL = 3.6 V dB,VπLα = 1.1 V dB,调谐电流低于10 nA,以及高达1 MHz的无衰减调谐响应。我们还分别针对高限制氮化硅和硅基平台提出了优化设计,半径分别低至80μm和45μm,性能远超当前的技术水平。应用包括用于光谱学和非线性光学的窄线宽可调谐二极管激光器、用于射频天线和激光雷达的光学相控阵波束形成网络,以及用于波分复用(WDM)电信链路的光学滤波器。

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