Fiber-optic vector acoustic receiver based on adaptive holographic interferometer
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Published:2022-01-04
Issue:2
Volume:32
Page:025101
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ISSN:1054-660X
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Container-title:Laser Physics
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language:
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Short-container-title:Laser Phys.
Author:
Romashko R V,Storozhenko D V,Bezruk M N,Bobruyko D A,Kulchin Y N
Abstract
Abstract
A mobile scalar–vector acoustic receiver is proposed, experimentally implemented and investigated. The key components of the receiver are (a) the six-channel fiber-optic coil-type sensor configured as to detect three projections of acoustic intensity vector, (b) the six-channel optical phase demodulator based on six-channel adaptive holographic interferometer configured with use of dynamic holograms multiplexed in a photorefractive crystal of cadmium telluride and (c) the signals recording ADC-based system combined with software package for data processing. Field tests of the developed receiver applied for obtaining scalar and vector parameters of acoustic waves generated by a stationary and moving acoustic source in open air and water area are carried out. Experimental results show perceptiveness of use of the fiber-optical adaptive interferometry system for bearing of weak acoustic sources in real conditions.
Subject
Industrial and Manufacturing Engineering,Condensed Matter Physics,Instrumentation,Atomic and Molecular Physics, and Optics