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Characterization of laser ablation plasmas by laser beam deflection

机译:通过激光束偏转表征激光烧蚀等离子体

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摘要

Laser probe beam and multiple-pass deflection techniques were used for real time and in situ monitoring of laser ablation plasma plumes in the mTorr pressure regime. Intensity and transit time of shock wave fronts were studied as functions of focal lens position, laser energy and pressure. The velocity of the shock wave was determined to be up to 30km s~(-1) for a pressure of 40 mTorr and to drop below 4km s~(-1) at 1 Torr. For transparent targets rear-side shock wave velocity was on to be slower than the corresponding front one. This method promises a reliable diagnostic tool for pulsed laser deposition processing allowing an increase in the quality of coating technologies.
机译:激光探针束和多次通过偏转技术用于实时和原位监测mTorr压力条件下的激光烧蚀等离子体羽流。研究了震波波前的强度和传播时间与聚焦透镜位置,激光能量和压力的关系。冲击波的速度在压力为40 mTorr时最高为30 km s〜(-1),在1 Torr时下降至4 km s〜(-1)以下。对于透明目标,后侧冲击波速度要慢于相应的前侧冲击波速度。这种方法有望为脉冲激光沉积工艺提供可靠的诊断工具,从而提高涂层技术的质量。

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