Department of Electrical Engineering and Computer Science, University of Wisconsin-Milwaukee, Milwaukee, Wisconsin 53201, USA.
Med Phys. 2010 Apr;37(4):1518-21. doi: 10.1118/1.3352666.
The purpose of this work is to demonstrate that higher amplitude of ultrashort laser induced photoacoustic signal can be achieved by multiple-pulse excitation when the temporal duration of the pulse train is less than the minimum of the medium's thermal relaxation time and stress relaxation time. Thus, improved signal-to-noise ratio can thus be attained through multiple-pulse excitation while minimizing the energy of each pulse.
The authors used a Michelson interferometer together with a picoseconds laser system to introduce two 6 ps pulses separated by a controllable delay by introducing a path length difference between the two arms of the interferometer. The authors then employed a series of three interferometers to create a pulse train consisting of eight pulses. The average pulse energy was 11 nJ and the temporal span of the pulse train was less than 1 ns.
The detected peak-to-peak amplitude of the multiple-pulse induced photoacoustic waves were linearly dependent on the number of pulses in the pulse train and such a linearity held for different optical absorption coefficients. The signal-to-noise ratio improved when the number of pulses increased. Moreover, nonlinear effects were not detected and no photoacoustic saturation effect was observed.
The authors have shown that multiple-pulse excitation improves the signal-to-noise ratio through an accumulated energy deposition effect. This method is invaluable for photoacoustic measurements that require ultrashort laser pulses with minimized pulse energy to avoid laser damage.
本工作旨在证明,当脉冲串的持续时间小于介质的热弛豫时间和应力弛豫时间的最小值时,通过多脉冲激发可以实现更高振幅的超短激光光声信号。因此,通过多脉冲激发可以获得更高的信噪比,同时将每个脉冲的能量最小化。
作者使用迈克尔逊干涉仪和皮秒激光系统,通过在干涉仪的两臂之间引入路径长度差,引入两个 6 ps 脉冲,它们之间的延迟时间可以控制。然后,作者使用一系列三个干涉仪来创建一个由八个脉冲组成的脉冲串。平均脉冲能量为 11 nJ,脉冲串的时间跨度小于 1 ns。
检测到的多脉冲诱导光声波的峰峰值幅度与脉冲串中的脉冲数线性相关,并且这种线性关系适用于不同的光吸收系数。当脉冲数增加时,信噪比提高。此外,没有检测到非线性效应,也没有观察到光声饱和效应。
作者已经表明,多脉冲激发通过累积能量沉积效应提高了信噪比。这种方法对于需要超短激光脉冲的光声测量非常有价值,因为超短激光脉冲的能量最小化可以避免激光损伤。