Dostal J, Dudzak R, Pisarczyk T, Pfeifer M, Huynh J, Chodukowski T, Kalinowska Z, Krousky E, Skala J, Hrebicek J, Medrik T, Golasowski J, Juha L, Ullschmied J
Institute of Plasma Physics of the Czech Academy of Sciences, Za Slovankou 3, 182 00 Prague, Czech Republic.
Institute of Plasma Physics and Laser Microfusion, Ul. Hery 23, 01-497 Warsaw, Poland.
Rev Sci Instrum. 2017 Apr;88(4):045109. doi: 10.1063/1.4979810.
A system of precise pulse synchronization between a single-shot large-scale laser exploiting an acousto-optical modulator and a femtosecond high repetition rate laser is reported in this article. This opto-electronical system has been developed for synchronization of the sub-nanosecond kJ-class iodine photodissociation laser system (Prague Asterix Laser System-PALS) with the femtosecond 25-TW Ti:sapphire (Ti:Sa) laser operating at a repetition rate 1 kHz or 10 Hz depending on the required energy level of output pulses. At 1 kHz synchronization regime, a single femtosecond pulse of duration about 45 fs and a small energy less than 1 mJ are exploited as a probe beam for irradiation of a three-frame interferometer, while at 10 Hz repetition rate a single femtosecond pulse with higher energy about 7-10 mJ is exploited as a probe beam for irradiation of a two-channel polaro-interferometer. The synchronization accuracy ±100 ps between the PALS and the Ti:Sa laser pulses has been achieved in both regimes of synchronization. The femtosecond interferograms of laser-produced plasmas obtained by the three-frame interferometer and the femtosecond polarimetric images obtained by the two-frame polaro-interferometer confirm the full usefulness and correct functionality of the proposed method of synchronization.
本文报道了一种利用声光调制器的单脉冲大尺度激光器与飞秒高重复率激光器之间的精确脉冲同步系统。该光电系统是为将亚纳秒级千焦量级碘光解离激光系统(布拉格阿斯特里克斯激光系统 - PALS)与飞秒25太瓦钛宝石(Ti:Sa)激光器同步而开发的,Ti:Sa激光器根据所需输出脉冲能量水平以1 kHz或10 Hz的重复频率运行。在1 kHz同步模式下,一个持续时间约45 fs且能量小于1 mJ的单个飞秒脉冲被用作探测光束来照射三帧干涉仪,而在10 Hz重复频率下,一个能量约7 - 10 mJ的单个飞秒脉冲被用作探测光束来照射双通道偏振干涉仪。在两种同步模式下,PALS与Ti:Sa激光脉冲之间均实现了±100 ps的同步精度。通过三帧干涉仪获得的激光产生等离子体的飞秒干涉图以及通过两帧偏振干涉仪获得的飞秒偏振图像证实了所提出同步方法的完全实用性和正确功能。