相关实验视频
Updated: May 5, 2026

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Writing Bragg Gratings in Multicore Fibers
Published on: April 20, 2016
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概括
本研究介绍了一种新的双向对称输入阵列波导网格 (AWG),用于增强纤维布拉格网格 (FBG) 查询. 新设计实现了高精度和分辨率,克服了FBG传感系统之前的局限性.
科学领域:
- 光子学和光学工程的工程.
- 集成光学 集成光学 集成光学
- 半导体设备制造业 半导体设备制造业
背景情况:
- 阵列波导网格 (AWG) 对于波长选择性的光信号处理至关重要.
- 在绝缘体 (SOI) 平台为集成光子设备提供了优势.
- 纤维布拉格格 (FBG) 传感器需要高性能查询系统来进行准确的测量.
研究的目的:
- 提出和描述一种新的双向对称输入AWG架构.
- 调查设计参数对AWG性能的影响.
- 为了展示一个高精度的 FBG 审讯系统.
主要方法:
- 在SOI平台上使用双蚀刻工艺制造双向对称输入AWG.
- 系统地比较不同的AWG设计,查询策略和算法.
- 2x12通道询问芯片的性能指标的实验性表征.
主要成果:
- 实现的插入损失<6dB,3dB带宽为1.467nm,交叉声音<-22.9dB.
- 经证明的审讯准确度为下午3点94分,分辨率为下午2点.
- 显示出出色的温度稳定性,克服了准确度-分辨率的权衡.
结论:
- 开发的双向对称输入AWG为高性能FBG查询提供了可行的方法.
- 该研究阐明了设计参数和查询性能之间的关键关系.
- 这项技术可以实现先进的FBG传感应用,需要高精度和分辨率.
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