Zhai Zhao-Hui, Zhong Sen-Cheng, Li Jun, Zhu Li-Guo, Meng Kun, Li Jiang, Liu Qiao, Peng Qi-Xian, Li Ze-Ren, Zhao Jian-Heng
National Key Laboratory of Shock Wave and Detonation Physics, Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang, Sichuan 621900, China.
Rev Sci Instrum. 2016 Sep;87(9):095101. doi: 10.1063/1.4961494.
Pulsed terahertz spectroscopy is suitable for spectroscopic diagnostics of ultrafast events. However, the study of irreversible or single shot ultrafast events requires ability to record transient properties at multiple time delays, i.e., time resolved at single shot level, which is not available currently. Here by angular multiplexing use of femtosecond laser pulses, we developed and demonstrated a time resolved, transient terahertz time domain spectroscopy technique, where burst mode THz pulses were generated and then detected in a single shot measurement manner. The burst mode THz pulses contain 2 sub-THz pulses, and the time gap between them is adjustable up to 1 ns with picosecond accuracy, thus it can be used to probe the single shot event at two different time delays. The system can detect the sub-THz pulses at 0.1 THz-2.5 THz range with signal to noise ratio (SNR) of ∼400 and spectrum resolution of 0.05 THz. System design was described here, and optimizations of single shot measurement of THz pulses were discussed in detail. Methods to improve SNR were also discussed in detail. A system application was demonstrated where pulsed THz signals at different time delays of the ultrafast process were successfully acquired within single shot measurement. This time resolved transient terahertz time domain spectroscopy technique provides a new diagnostic tool for irreversible or single shot ultrafast events where dynamic information can be extracted at terahertz range within one-shot experiment.
脉冲太赫兹光谱适用于超快事件的光谱诊断。然而,对不可逆或单次超快事件的研究需要能够在多个时间延迟下记录瞬态特性,即在单次水平上实现时间分辨,而目前这是无法做到的。在此,通过飞秒激光脉冲的角度复用,我们开发并演示了一种时间分辨的瞬态太赫兹时域光谱技术,其中以单次测量方式产生并检测突发模式太赫兹脉冲。突发模式太赫兹脉冲包含两个亚太赫兹脉冲,它们之间的时间间隔可在皮秒精度下调节至1纳秒,因此可用于在两个不同时间延迟下探测单次事件。该系统能够在0.1太赫兹至2.5太赫兹范围内检测亚太赫兹脉冲,信噪比约为400,光谱分辨率为0.05太赫兹。本文描述了系统设计,并详细讨论了太赫兹脉冲单次测量的优化。还详细讨论了提高信噪比的方法。展示了一个系统应用,即在单次测量中成功获取了超快过程不同时间延迟下的脉冲太赫兹信号。这种时间分辨的瞬态太赫兹时域光谱技术为不可逆或单次超快事件提供了一种新的诊断工具,能够在单次实验中在太赫兹范围内提取动态信息。