Bragg光栅环形谐振器作为高灵敏度折射率传感器的性能研究

C. E. Campanella, F. De Leonardis, V. Passaro
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引用次数: 2

摘要

本文分析了一种基于闭合波导布拉格光栅的共振光学结构的折射率传感器的性能。特别提出了一种具有布拉格光栅特性的波导布拉格蛇形线(BSRR)。该器件表现出以光子带隙(PBG)行为为特征的光谱响应。在非常靠近带隙边缘处,它表现出由光栅效应耦合的分裂共振模式,其分裂幅度等于PBG谱扩展。通过改变有效折射率,可以改变光子带隙分裂的幅度。否则,如果器件的长度发生变化,PBG的扩展仍然几乎保持不变,因为只有布拉格波长会发生位移。通过利用这一物理原理,这些器件可以被证明是高灵敏度折射率光子传感器,基于几乎不受任何环境扰动产生的长度变化的传感机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of Bragg grating ring resonator as high sensitivity refractive index sensor
In this paper we analyze the performance of a refractive index sensor based on resonant optical structures obtained by closing on itself waveguide Bragg gratings. In particular, a waveguide Bragg serpentine (BSRR), which behaves like a Bragg grating, is proposed. This device shows a spectral response characterized by a photonic band gap (PBG) behavior. Very close to the band gap edges, it exhibits split resonant modes coupled by the grating effect and having a splitting magnitude equal to the PBG spectral extension. By changing the effective refractive index, the photonic band gap splitting magnitude varies. Otherwise, the PBG extension still remains almost unvaried if the length of the device changes, because only the Bragg wavelength will shift. By exploiting this physical principle, these devices can be proved as high sensitivity refractive index photonic sensors, based on a sensing mechanism almost immune to the length variations generated from any environmental perturbation.
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