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Laser Plasma Formation Using Dual Pulse Pre-Ionization

机译:使用双脉冲预电离的激光等离子体形成

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This contribution details an experimental and theoretical study of tailoring laser plasma temperature using two overlapped laser pulses of nanosecond duration. The method utilizes an ultraviolet pulsed laser beam to achieve pre-ionization, followed by a second, near-infrared, superimposed pulse to provide energy addition in a controllable fashion through electron avalanche ionization (EAI). Experiments were conducted in atmospheric pressure air. It was observed during experiments, and through numerical simulations, that the pre-ionization beam influences the breakdown threshold of the overlapped second beam. A subsequent study used laser Schlieren images as a diagnostic tool to aid the understanding of the temporal and spatial evolution of the breakdown kernel. Schlieren images of the overlapped ultraviolet and near-infrared beams were obtained at various time-delays for both breakdown and below breakdown conditions.
机译:该贡献详细介绍了使用纳秒持续时间的两个重叠激光脉冲定制激光等离子体温度的实验和理论研究。该方法利用紫外线脉冲激光束来实现预电离,其次是第二,近红外,叠加脉冲,以通过电子雪崩电离(EAI)以可控方式提供能量添加。实验在大气压空气中进行。在实验期间观察到,通过数值模拟,预电离束影响重叠的第二梁的击穿阈值。随后的研究使用了激光Schlieren图像作为诊断工具,以帮助了解击穿内核的时间和空间演化。在各种时间延迟中获得重叠的紫外线和近红外梁的Schlieren图像,用于分解和低于击穿条件。

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