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Hybrid ultra-high-Q silica microcavity Raman lasers

机译:混合超高Q二氧化硅微腔拉曼激光器

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摘要

Whispering gallery mode optical resonators integrated on silicon have demonstrated low threshold Raman lasers. One of the primary reasons for their success is their ultra-high quality factors (Q) which result in an amplification of the circulating optical field. Therefore, to date, the key research focus has been on maintaining high Q factors, as that determines the lasing threshold and linewidth. However, equally important criteria are lasing efficiency and wavelength. These parameters are governed by the material, not the cavity Q. Therefore, to fully address this challenge, it is necessary to develop new materials. We have synthesized a suite of metal-doped silica and small molecules to enable the development of higher performance Raman lasers. The efficiencies and thresholds of many of these devices surpass the previous work. Specifically, the silica sol-gel lasers are doped with metal nanoparticles (eg Ti, Zr) and are fabricated using conventional microanofabrication methods. The intercalation of the metal in the silica matrix increases the silica Raman gain coefficient by changing the polarizability of the material. We have also made a new suite of small molecules that intrinsically have increased Raman gain values. By grafting the materials to the device surface, the overall Raman gain of the device is increased. These approaches enable two different strategies of improving the Raman efficiency and threshold of microcavity-based lasers.
机译:集成在硅片上的回音壁模式光谐振器已展示出低阈值拉曼激光器。其成功的主要原因之一是其超高品质因数(Q),可导致循环光学场的放大。因此,迄今为止,关键的研究重点一直在保持高Q因子上,因为这决定了激光阈值和线宽。但是,同样重要的标准是激光效率和波长。这些参数由材料而不是型腔Q决定。因此,要完全解决这一难题,必须开发新材料。我们已经合成了一组金属掺杂的二氧化硅和小分子,以实现更高性能的拉曼激光器的开发。这些设备中许多设备的效率和阈值都超过了以前的工作。具体而言,二氧化硅溶胶-凝胶激光器掺杂有金属纳米颗粒(例如Ti,Zr),并使用常规的微/纳米加工方法制造。金属在二氧化硅基质中的插入通过改变材料的极化率而增加了二氧化硅拉曼增益系数。我们还制作了一组新的小分子,这些小分子本质上提高了拉曼增益值。通过将材料接枝到器件表面,可以提高器件的整体拉曼增益。这些方法实现了两种不同的提高拉曼效率和基于微腔激光器的阈值的策略。

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  • 来源
  • 会议地点 San Francisco(US)
  • 作者单位

    Mork Family Department of Chemical Engineering and Material Science, University of Southern California, Los Angeles, CA USA 90089,Ming Hsieh Department of Electrical Engineering, University of Southern California, Los Angeles, CA, USA 90089;

    Mork Family Department of Chemical Engineering and Material Science, University of Southern California, Los Angeles, CA USA 90089;

    Mork Family Department of Chemical Engineering and Material Science, University of Southern California, Los Angeles, CA USA 90089;

    Ming Hsieh Department of Electrical Engineering, University of Southern California, Los Angeles, CA, USA 90089;

    Mork Family Department of Chemical Engineering and Material Science, University of Southern California, Los Angeles, CA USA 90089;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    optical resonator; whispering gallery mode; Raman; integrated photonics;

    机译:光谐振器低语画廊模式;拉曼集成光子学;

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