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Photoacoustic transients generated by laser irradiation of thin films

机译:激光照射薄膜产生的光声瞬变

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Irradiation of an optically thin layer immersed in a transparent fluid with pulsed laser radiation can generate photoacoustic waves through two mechanisms. The first of these is the conventional optical heating of the layer followed by thermal expansion, in which the mechanical motion of the expansion launches a pair of oppositely directed sound waves. A second, recently reported mechanism, is operative when heat is conducted to the transparent medium raising its temperature, while at the same time reducing the temperature in the absorbing body. The latter mechanism has been shown to result in compressive transients at the leading edges of the photoacoustic waveforms. Here the photoacoustic effect produced by irradiating thin metal films which undergo negligible thermal expansion under optical irradiation, but which generate sound solely by the heat transfer mechanism is investigated. Solution to the wave equation for the photoacoustic effect from the heat transfer mechanism is given and compared with the results of experiments using nanosecond laser pulses to irradiate thin metal films.
机译:用脉冲激光辐射辐照浸没在透明流体中的光学薄层可以通过两种机理产生光声波。首先是对层的常规光学加热,然后进行热膨胀,其中膨胀的机械运动会发射一对方向相反的声波。最近报道的第二种机制是有效的,当热量传导到透明介质时,其温度升高,同时降低吸收体中的温度。已显示后一种机制会在光声波形的前沿产生压缩瞬变。在此,研究了通过照射薄金属膜产生的光声效应,该金属膜在光辐射下几乎可以忽略不计,但仅通过传热机制产生声音。给出了传热机理对光声效应波动方程的解,并将其与使用纳秒激光脉冲辐照金属薄膜的实验结果进行了比较。

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