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Ultra-Narrow Bandwidth Optical Resonators for Integrated Low Frequency Noise Lasers.

机译:用于集成低频噪声激光器的超窄带宽光学谐振器。

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摘要

The development of narrowband resonators has far reaching applications in integrated optics. As a precise reference of wavelength, filters can be used in sensors, metrology, nonlinear optics, microwave photonics, and laser stabilization. In this work, we develop record high quality factor (Q) Si 3N4 waveguide resonators, and utilize them to stabilize a heterogeneously integrated Si/III V laser.;To increase the Q factor of waveguide resonators, particular attention is given to loss mechanisms. Propagation loss of <0.1 dB/m is demonstrated on the ultra low loss waveguide platform, a low index contrast, high aspect ratio Si3N4 waveguide geometry fabricated with high quality materials and high temperature anneals. Ideality in the directional couplers used for coupling to the resonators is studied and losses are reduced such that 81 million intrinsic Q factor is achieved. Additional results include 1x16 resonant splitters, low ? narrowband gratings, and a dual layer waveguide technology for low loss and low bend radius in separate regions of the same device layer.;We then combine an ultra high Q resonator and a heterogeneous Si/III V laser in a Pound Drever Hall (PDH) frequency stabilization system to yield narrow linewidth characteristics for a stable on chip laser reference. The high frequency noise filtering is performed with Si resonant mirrors in the laser cavity. A 30 million Q factor Si3N4 resonator is used with electrical feedback to reduce close in noise and frequency walk off. The laser shows high frequency noise levels of 60x103 Hz2/Hz corresponding to 160 kHz linewidth, and the low frequency noise is suppressed 33 dB to 103 Hz2/Hz with the PDH system.
机译:窄带谐振器的发展已在集成光学领域得到广泛应用。作为波长的精确参考,滤光片可用于传感器,计量学,非线性光学,微波光子学和激光稳定化。在这项工作中,我们开发了创纪录的高品质因数(Q)Si 3N4波导谐振器,并利用它们来稳定异质集成的Si / III V激光器。;要增加波导谐振器的Q因子,尤其要注意损耗机制。在超低损耗波导平台,低折射率对比度,高纵横比Si3N4波导几何结构(由高质量材料和高温退火制成)上证明了小于0.1 dB / m的传播损耗。研究了用于耦合到谐振器的定向耦合器的理想性,并减少了损耗,从而实现了8100万本征Q因子。其他结果包括1x16谐振分路器,低?窄带光栅,以及用于在同一器件层的不同区域中实现低损耗和低弯曲半径的双层波导技术。然后,我们将超高Q谐振器和异质Si / III V激光器组合在磅Dr霍尔(PDH)中频率稳定系统可产生窄线宽特性,以提供稳定的片上激光基准。高频噪声滤波是通过激光腔中的Si谐振镜执行的。一个具有3千万个Q因子的Si3N4谐振器与电反馈一起使用,以减少噪声和频率跳动的闭合。激光器显示出60x103 Hz2 / Hz的高频噪声电平,对应于160 kHz线宽,而PDH系统将低频噪声抑制在33 dB至103 Hz2 / Hz之间。

著录项

  • 作者

    Spencer, Daryl T.;

  • 作者单位

    University of California, Santa Barbara.;

  • 授予单位 University of California, Santa Barbara.;
  • 学科 Optics.;Electrical engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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