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An acousto-optic sensor based on resonance grating waveguide structure

机译:基于共振光栅波导结构的声光传感器

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This paper presents an acousto-optic (AO) sensor based on resonance grating waveguide structure. The sensor is fabricated using elastic polymer materials to achieve a good sensitivity to ultrasound pressure waves. Ultrasound pressure waves modify the structural parameters of the sensor and result in the optical resonance shift of the sensor. This converts into a light intensity modulation. A commercial ultrasound transducer at 20 MHz is used to characterize a fabricated sensor and detection sensitivity at different optical source wavelength within a resonance spectrum is investigated. Practical use of the sensor at a fixed optical source wavelength is presented. Ultimately, the geometry of the planar sensor structure is suitable for two-dimensional, optical pressure imaging applications such as pressure wave detection and mapping, and ultrasound imaging.
机译:本文提出了一种基于共振光栅波导结构的声光(AO)传感器。该传感器使用弹性聚合物材料制成,以实现对超声波压力波的良好灵敏度。超声波压力波会修改传感器的结构参数,并导致传感器的光学共振位移。这转换成光强度调制。使用20 MHz的商用超声换能器表征制造的传感器,并研究了共振光谱内不同光源波长下的检测灵敏度。介绍了在固定光源波长下传感器的实际使用。最终,平面传感器结构的几何形状适用于二维光学压力成像应用,例如压力波检测和绘图以及超声成像。

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