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Cantilever beam structural resonant-type integrated optical waveguide accelerometer

机译:悬臂梁结构共振型集成光波导加速度计

摘要

A cantilever beam structural resonant-type integrated optical waveguide accelerometer, includes an input waveguide (1), a dissymmetrical structural Mach-Zehnder interferometer (2), a micro-mechanical vibration cantilever beam (3), a short curved waveguide (4) and an output waveguide (5); all the waveguide structures and the cantilever beam use the integrated optical micromachining technique, and the device single-scale integration can be realized by using the temperature-insensitive organic polymer optical waveguide structure and the organic polymer substrate, the key technique indexes such as detection sensitivity, dynamic range are extensively adjusted. The phase difference of the optical signal can be measured by detecting the optical intensity of the resonant frequency of the optical circuit so as to achieve high sensitive acceleration detection, and to be free from the effect of the ambient temperature disturbance and waveguide birefringence.
机译:悬臂梁结构共振型集成光波导加速度计,包括输入波导( 1 ),非对称结构马赫曾德尔干涉仪( 2 ),微机械振动悬臂梁( 3 ),短弯曲波导( 4 )和输出波导( 5 );所有的波导结构和悬臂梁均采用集成的光学微加工技术,通过使用对温度不敏感的有机聚合物光波导结构和有机聚合物基板,可以实现器件单尺度集成,检测灵敏度等关键技术指标,动态范围已广泛调整。可以通过检测光路的谐振频率的光强度来测量光信号的相位差,从而实现高灵敏度的加速度检测,并且不受环境温度干扰和波导双折射的影响。

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