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激光诱导等离子体中数密度和温度的时间分辨双梳测量

Time-resolved dual-comb measurement of number density and temperature in a laser-induced plasma.

作者信息

Zhang Yu, Lecaplain Caroline, Weeks Reagan R D, Yeak Jeremy, Harilal Sivanandan S, Phillips Mark C, Jason Jones R

出版信息

Opt Lett. 2019 Jul 15;44(14):3458-3461. doi: 10.1364/OL.44.003458.

Abstract

We utilize time-resolved dual-comb spectroscopy to measure the temporal evolution of the population number densities and absorption excitation temperature of Fe in a laser-induced plasma. The spectra of three excited-state transitions of Fe around 533 nm are simultaneously measured at different time delays following laser ablation of a stainless steel sample. This Letter probes late-time behaviors of laser-induced ablation plumes during plasma cooling. The high spectral resolution and broad spectral coverage of the dual-comb technique, combined with the time-resolved measurement capability shown here, will aid in the characterization of laser induced plasmas, including species identification and molecule and particle formation that can occur at later times in the plasma evolution.

摘要

我们利用时间分辨双梳光谱技术来测量激光诱导等离子体中Fe的粒子数密度和吸收激发温度随时间的演化。在激光烧蚀不锈钢样品后的不同时间延迟下,同时测量了Fe在533nm附近的三个激发态跃迁的光谱。本快报探究了等离子体冷却过程中激光诱导烧蚀羽流的后期行为。双梳技术的高光谱分辨率和宽光谱覆盖范围,结合此处展示的时间分辨测量能力,将有助于表征激光诱导等离子体,包括物种识别以及在等离子体演化后期可能发生的分子和粒子形成。

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