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LASER-INDUCED THERMAL ACOUSTICS (LITA) SIGNALS FROM FINITE BEAMS

机译:有限光束的激光诱导热声(LITA)信号

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摘要

Laser-induced thermal acoustics (LITA) is a four-wave mixing technique that may be employed to measure sound speeds, transport properties, velocities, and susceptibilities of fluids. It is particularly effective in high-pressure gases (> 1 bar). An analytical expression for LITA signals is derived by the use of linearized equations of hydrodynamics and light scattering. This analysis, which includes full finite-beam-size effects and the optoacoustic effects of thermalization and electrostriction, predicts the amplitude and the time history of narrow-band time-resolved LITA and broadband spectrally resolved (mulitplex) LITA signals. The time behavior of the detected LITA signal depends significantly on the detection solid angle, with implications for the measurement of diffusivities by the use of LITA and the proper physical picture of LITA scattering. This and other elements of the physics of LITA that emerge from the analysis are discussed. Theoretical signals are compared with experimental LITA data. [References: 11]
机译:激光感应热声学(LITA)是一种四波混合技术,可用于测量流体的声速,传输特性,速度和磁化率。在高压气体(> 1 bar)中特别有效。通过使用流体动力学和光散射的线性方程,可以得出LITA信号的解析表达式。这项分析包括完整的有限光束大小效应以及热化和电致伸缩的光声效应,可预测窄带时间分辨LITA和宽带频谱分辨(多重)LITA信号的幅度和时程。检测到的LITA信号的时间行为在很大程度上取决于检测立体角,这对于通过使用LITA以及适当的LITA散射物理图来测量扩散度有影响。讨论了从分析中得出的LITA的这一要素和其他物理要素。将理论信号与LITA实验数据进行比较。 [参考:11]

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