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Acousto-optic effect compensation for optical determination of the normal velocity distribution associated with acoustic transducer radiation

机译:声光效应补偿,用于光学确定与声换能器辐射相关的法向速度分布

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摘要

The acousto-optic effect, in which an acoustic wave causes variations in the optical index of refraction, imposes a fundamental limitation on the determination of the normal velocity, or normal displacement, distribution on the surface of an acoustic transducer or optically reflecting pellicle by a scanning heterodyne, or homodyne, laser interferometer. A general method of compensation is developed for a pulsed harmonic pressure field, transmitted by an acoustic transducer, in which the laser beam can transit the transducer nearfield. By representing the pressure field by the Rayleigh integral, the basic equation for the unknown normal velocity on the surface of the transducer or pellicle is transformed into a Fredholm equation of the second kind. A numerical solution is immediate when the scanned points on the surface correspond to those of the surface area discretization. Compensation is also made for oblique angles of incidence by the scanning laser beam. The present compensation method neglects edge waves, or those due to boundary diffraction, as well as effects due to baffles, if present. By allowing measurement in the nearfield of the radiating transducer, the method can enable quantification of edge-wave and baffle effects on transducer radiation. A verification experiment has been designed.
机译:声波效应(其中声波引起光学折射率的变化)对确定声换能器或光学反射薄膜的法向速度或法向位移的分布施加了基本限制。扫描外差或零差激光干涉仪。针对由声换能器传输的脉冲谐波压力场,开发了一种通用的补偿方法,其中激光束可以通过换能器近场。通过用瑞利积分表示压力场,将换能器或防护膜表面上未知法向速度的基本方程式转换为第二种Fredholm方程式。当表面上的扫描点与表面积离散化的扫描点相对应时,可以立即进行数值解。还通过扫描激光束补偿斜入射角。本补偿方法忽略了边缘波或由于边界衍射而产生的边缘波,以及由于折流板(如果存在的话)引起的影响。通过允许在辐射换能器的近场中进行测量,该方法可以实现对换能器辐射的边波和挡板效应的量化。设计了验证实验。

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