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用于高动态范围超声检测的被动解调脉冲干涉测量法。

Passive-demodulation pulse interferometry for ultrasound detection with a high dynamic range.

作者信息

Hazan Yoav, Rosenthal Amir

出版信息

Opt Lett. 2018 Mar 1;43(5):1039-1042. doi: 10.1364/OL.43.001039.

Abstract

In the optical detection of ultrasound, resonators with high Q-factors are often used to maximize sensitivity. However, increasing the Q-factor of a resonator may reduce the linear range of the interrogation scheme, making it more susceptible to strong external perturbations and incapable of measuring strong acoustic signals. In this Letter, a passive-demodulation scheme for pulse interferometry was developed for high dynamic-range measurements. The passive scheme was based on an unbalanced Mach-Zehnder interferometer and a 90° optical hybrid, which was implemented in a dual-polarization all-fiber setup. We demonstrated the passive scheme for detecting ultrasound bursts with pressure levels for which the response of conventional, active interferometric techniques became nonlinear.

摘要

在超声的光学检测中,通常使用具有高品质因数的谐振器来最大化灵敏度。然而,提高谐振器的品质因数可能会减小询问方案的线性范围,使其更容易受到强外部扰动的影响,并且无法测量强声学信号。在本信函中,开发了一种用于脉冲干涉测量的被动解调方案,用于高动态范围测量。该被动方案基于不平衡马赫-曾德尔干涉仪和90°光学混合器,在双偏振全光纤设置中实现。我们展示了该被动方案用于检测具有压力水平的超声脉冲串,对于这些压力水平,传统的有源干涉测量技术的响应会变为非线性。

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