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Study of various material particles by third harmonic generation method based on laser pulse induced plasma
S.K.Maurya; M.Venkatesh; R.A.Ganeev; C.L.Guo
2019
发表期刊Optical Materials
ISSN0925-3467
卷号98页码:7
摘要Third harmonic generation (THG) from plasma can be used as probe radiation to characterize the plasma components. In this work, we present the study of the spatiotemporal profile of generated particles in various plasmas produced from bulk targets (C, Cr, In, Ni, Ag, CdS and ZnS) using pulsed laser ablation and THG using 800 nm, 40 fs probe pulses. The dependence of THG on the probe pulse intensity and the distance of the probe beam from the target position are analyzed. The influence of the ejected particle mass on THG with respect to the distance between the target and the probe pulses position was observed. The temporal evolution of THG depended on the delay between heating 6 ns pulses and driving 40 fs pulses. The variation of third harmonic intensity in the plasma components with atomic weight M on the delay (t(d)) was consistent with the kinetic model described by relation t(d) infinity M-0.5. THG from metal targets was mostly originated from the atomic and ionic components in plasma, whereas the clusters and heavier particles were responsible for this process in the case of ablated semiconductor materials.
关键词Third harmonic generation,Plasma,Particle characterization,Laser,ablation,nanoparticles,Materials Science,Optics
DOI10.1016/j.optmat.2019.109423
收录类别SCI ; EI
语种英语
引用统计
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/63139
专题中国科学院长春光学精密机械与物理研究所
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GB/T 7714
S.K.Maurya,M.Venkatesh,R.A.Ganeev,et al. Study of various material particles by third harmonic generation method based on laser pulse induced plasma[J]. Optical Materials,2019,98:7.
APA S.K.Maurya,M.Venkatesh,R.A.Ganeev,&C.L.Guo.(2019).Study of various material particles by third harmonic generation method based on laser pulse induced plasma.Optical Materials,98,7.
MLA S.K.Maurya,et al."Study of various material particles by third harmonic generation method based on laser pulse induced plasma".Optical Materials 98(2019):7.
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