Li Yu-Tai, Liu Tze-An, Chen Chen-Wei, Lee Yu-Hsien, Yabushita Atsushi
Opt Express. 2013 Sep 9;21(18):21579-86. doi: 10.1364/OE.21.021579.
We report on a Laser Induced Breakdown Spectroscopy (LIBS) system with a very high temporal resolution, using femtosecond and picosecond pulse laser excitation of pure aluminum (Al). By using a 140 fs Ti:Sapphire laser in an ultrafast optical Kerr gate (OKG), we demonstrate LIBS sampling with a sub-ps time resolution (0.8 ± 0.08 ps) in a 14 ns window. The width of the gating window in this system was as narrow as 0.8 ps, owing to the inclusion of a carbon disulfide (CS(2)) cell, which has a fast response and a large nonlinear coefficient. Furthermore, when using a 100 ps pulsed Nd:YAG laser and a fast photomultiplier tube (PMT) we demonstrate a LIBS system with a nanosecond time resolution (2.20 ± 0.08 ns) in a microsecond window. With this sort of temporal resolution, a non-continuous decay in the Al signal could be observed. After 50 ns decay of the first peak, the second peak at 230 ns is started to perform. Experimental results with such short temporal windows in LIBS, in both nanosecond and microsecond ranges, are important for fast temporal evolution measurements and observations of early continuum emission in materials.
我们报道了一种具有非常高时间分辨率的激光诱导击穿光谱(LIBS)系统,该系统使用飞秒和皮秒脉冲激光激发纯铝(Al)。通过在超快光学克尔门(OKG)中使用140飞秒的钛宝石激光器,我们展示了在14纳秒窗口内具有亚皮秒时间分辨率(0.8±0.08皮秒)的LIBS采样。由于包含具有快速响应和大非线性系数的二硫化碳(CS₂)池,该系统中的选通窗口宽度窄至0.8皮秒。此外,当使用100皮秒脉冲的Nd:YAG激光器和快速光电倍增管(PMT)时,我们展示了一种在微秒窗口内具有纳秒时间分辨率(2.20±0.08纳秒)的LIBS系统。凭借这种时间分辨率,可以观察到Al信号的非连续衰减。在第一个峰值衰减50纳秒后,230纳秒处的第二个峰值开始出现。LIBS中这种纳秒和微秒范围内的短时间窗口的实验结果对于材料中早期连续发射的快速时间演化测量和观察非常重要。