Expansion of laser-induced plume after the passage of a counter shock wave through a background gas

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作者
Akira Higo
Keita Katayama
Hiroshi Fukuoka
Takehito Yoshida
Tamao Aoki
Minoru Yaga
Ikurou Umezu
机构
[1] Konan University,Graduate School of Natural Science
[2] National Institute of Technology,Department of Physics
[3] Nara College,Department of Mechanical System Engineering
[4] National Institute of Technology,undefined
[5] Anan College,undefined
[6] Konan University,undefined
[7] University of the Ryukyus,undefined
来源
Applied Physics A | 2020年 / 126卷
关键词
Pulsed laser ablation; Shock wave; Plume expansion; Pulsed laser deposition;
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摘要
Double-pulsed laser ablation with two targets and lasers in a background gas is a method to form nanoparticle complex. Effects of pulse delay between two lasers on plume expansion dynamics are discussed. The germanium and silicon targets were set parallel to each other and irradiated by two YAG lasers. The germanium target was irradiated followed by irradiation of the silicon target with delay time, td. We found that the expansion distance of delayed silicon plume is enhanced for 2 µs ≤ td ≤ 50 µs, compared to that when only the silicon target is irradiated. For td = 200 µs, the expansion distance of delayed silicon plume is similar to that when only the silicon target is irradiated. We discuss the expansion dynamics of the delayed silicon plume based on the effect of the density distribution induced by the primary germanium plume. Our results indicate that the effect of primary germanium plume remains up to about td = 50 µs, and it disappears by td = 200 µs.
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