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Analytical Vernier Effects of a PANDA Ring Resonator for Microforce Sensing Application

机译:PANDA环形谐振器在微力传感应用中的分析游标效应

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A nonsymmetric Vernier type of a modified add-drop filter known as a PANDA ring resonator is simulated and calculated to achieve wider free spectral range (FSR) in the order of magnitude of terahertz and micrometer with different ring radii. The expanded FSR is determined by the least common multiple of the FSRs of the individual ring resonators. The dependence of the transmission characteristics of the PANDA ring on the coupling coefficients of directional couplers is studied. The improvement in suppression of interstitial resonances by using high-order Vernier filters is investigated. In application, such a system can be employed as a sensing system for measuring the wavelength shift, where the low power consumption due to the low intensity source is the other advantage. The potential for microscale force sensing application, especially, for atom/molecule force sensors. The sensing unit structure can be in the few hundred micrometers to millimeters. The applied force can be in the form of distributed force within thin film material which is coated on the sensing unit.
机译:模拟并计算了非对称游标类型的改进型分插滤波器(称为PANDA环形谐振器),以实现具有不同环半径的太赫兹和微米级数量级的更宽的自由光谱范围(FSR)。扩展的FSR由各个环形谐振器的FSR的最小公倍数确定。研究了PANDA环的传输特性对定向耦合器耦合系数的依赖性。研究了通过使用高阶游标滤波器来抑制间隙共振。在应用中,可以将这种系统用作用于测量波长偏移的感测系统,其中由于低强度源而导致的低功耗是另一个优点。微尺度力感测应用的潜力,尤其是原子/分子力传感器的潜力。传感单元的结构可以在几百微米到几毫米之间。施加的力可以是分布在涂覆在传感单元上的薄膜材料内的分布力的形式。

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