首页> 外文会议>SPIE Optical Engineering + Applications Conference >Multi-Path Interferometer Structures with Cleaved Silica Microspheres
【24h】

Multi-Path Interferometer Structures with Cleaved Silica Microspheres

机译:裂隙二氧化硅微球的多径干涉仪结构

获取原文
获取外文期刊封面目录资料

摘要

Two multi-path interferometers were developed using cleaved silica microspheres. A microsphere on top of a singlemode fiber tip was cleaved with a focused ion beam. The asymmetry introduced in the structure generates a new set of optical paths due to random reflections inside the microsphere. The obtained reflection spectrum presents a random-like interferometric behavior with strong spectral modulation of around 3 dB amplitude. Two distinct regions can be observed when a fast Fourier transform is applied. The first involves two cavities at a lower frequency and the second region involves a band of frequencies that is originated by the random interferometric reflections. These two spectral characteristics can be separated using low-pass and high-pass filters, respectively. A correlation method was used to obtain a temperature response from the two-cavity component. A similar structure was also created in a microsphere of multimode fiber. The microsphere was cleaved by polishing the structure with a certain angle. The interference between the different optical paths can be seen as the superposition of several two-wave interferometers, which can be discriminated through signal processing. Temperature sensing was also explored with this structure. The sensitivity to temperature is more than 3-fold for smaller cavities. Moreover, a sensitivity enhancement is also verified if a correlation method is used.
机译:使用裂解的二氧化硅微球开发了两个多径干涉仪。用聚焦离子束切割单模光纤尖端顶部的微球。由于微球内部的随机反射,结构中引入的不对称性产生了一组新的光路。所获得的反射光谱呈现出类似随机的干涉行为,并具有约3 dB振幅的强光谱调制。当应用快速傅立叶变换时,可以观察到两个不同的区域。第一个区域包含较低频率的两个空腔,第二个区域包含由随机干涉反射产生的频带。可以分别使用低通和高通滤波器来分离这两个光谱特性。使用相关方法从两腔组件获得温度响应。在多模光纤的微球体中也创建了类似的结构。通过以一定角度抛光结构来裂解微球。不同光路之间的干涉可以看作是几个两波干涉仪的叠加,可以通过信号处理来区分。利用这种结构还探索了温度感测。对于较小的型腔,对温度的敏感度是其三倍以上。此外,如果使用相关方法,则还可以验证灵敏度的提高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号