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FDTD Simulation: Simultaneous Measurement of the Refractive Index and the Pressure Using Microdisk Resonator with Two Whispering-Gallery Modes

机译:FDTD仿真:使用Microdisk谐振器的折射率和压力同时测量两个耳语画廊模式

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摘要

In this paper, an approach to measure both the refractive index (RI) and the pressure simultaneously using two Whispering-Gallery Modes (WGMs) in a microdisk resonator is theoretically proposed. Due to the difference in the energy distribution of the first and second order WGMs, the sensitivity of two modes toward the variation of RI and pressure applied to the device show differences. An RI sensitivity of 29.07 nm/RIU and pressure sensitivity of 0.576 pm/kPa for WGM (1,36), and an RI sensitivity of 38.68 nm/RIU and a pressure sensitivity of 0.589 pm/kPa for WGM (2,28) are obtained through the 3D finite-difference time-domain (3D-FDTD) simulation. Dual parametric sensing can be achieved by solving the second-order inverse sensitivity matrix. Therefore, strain–optical coupling behavior is effectively eliminated. The dual sensing scheme we proposed provides a novel approach to overcome the difficulty of multi-sensing applications based on the flexible photonic device.
机译:在本文中,理论上提出了一种测量折射率(RI)和同时使用两种潜言画廊模式(WGMS)的折射率(RI)和压力的方法。由于第一和二阶WGM的能量分布的差异,两种模式朝向施加到器件的RI变化的敏感性显示出差异。 RI敏感性为29.07nm / RiU和WGM(1,36)的0.576μm/ KPa的压力敏感性,以及38.68nm / Riu的RI敏感性和WGM(2,28)的0.589μm/ kPa的压力敏感性通过3D有限差分时间域(3D-FDTD)仿真获得。通过求解二阶逆灵敏度矩阵,可以实现双参数传感。因此,有效地消除了应变光耦合行为。我们提出的双传感方案提供了一种新的方法来克服基于柔性光子器件的多感测应用的难度。

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