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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Onset of optical emission in femtosecond laser-induced plasmas and its correlation with surface dynamics monitored by pump-probe time-resolved microscopy
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Onset of optical emission in femtosecond laser-induced plasmas and its correlation with surface dynamics monitored by pump-probe time-resolved microscopy

机译:飞秒激光诱导等离子体中光发射的发生及其与通过泵浦探针时间分辨显微镜监测的表面动力学的关系

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摘要

Femtosecond time-resolved images acquired by using a two-color pump-probe microscope have been used in combination with optical emission spectroscopy to determine the time scales for the onset of atomic and molecular emission in laser-induced plasmas. A time-slicing acquisition scheme has been used to follow the build-up of emission lines in the spectra. Microscopy images suggest that the ejection of material from silicon starts several nanoseconds before photon emission is detected in our system. The time elapsed is material dependent and proceeds much slower in organics as demonstrated for nylon and Teflon. This finding is of great interest for time-resolved measurements in laser-induced plasmas and should be used for extracting maximum information from spectral data following femtosecond laser ablation.
机译:通过使用双色泵浦探针显微镜获取的飞秒时间分辨图像已与光发射光谱法结合使用,以确定在激光诱导的等离子体中发生原子和分子发射的时间尺度。时间切片采集方案已用于跟踪光谱中发射线的建立。显微镜图像表明,在我们的系统中检测到光子发射之前,从硅中喷射材料开始几纳秒。经过的时间取决于材料,并且在有机物中的进展要慢得多,如尼龙和特氟隆所证明的。这一发现对于激光诱导等离子体中的时间分辨测量非常感兴趣,应该用于飞秒激光消融后从光谱数据中提取最大信息。

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