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首页> 外文期刊>Chemical Physics Letters >Micro-dynamics of optical breakdown in water induced by nanosecond laser pulses of 1064 nm wavelength
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Micro-dynamics of optical breakdown in water induced by nanosecond laser pulses of 1064 nm wavelength

机译:波长为1064 nm的纳秒激光脉冲在水中引起的光学击穿的微观动力学

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摘要

Optical breakdown in water induced by 1064 nm Nd:YAG laser was visualized and measured by applying shadow and Schlieren optical diagnostic techniques. The research was focused on the earlier stages of the breakdown process, just after the end of the heating laser pulse. The spatial characteristics of laser spark columns were measured and compared to numerical analysis of cavities arising over inclusions. Anom_alously long laser spark columns were observed. The distribution of cavity dimensions and energies absorbed in the spark were measured along the laser spark column. A novel non-probability based criterion for laser breakdown threshold was suggested, namely, the pulse energy which generates a spark of negligibly small length.
机译:通过应用阴影和Schlieren光学诊断技术,可视化并测量了1064 nm Nd:YAG激光在水中引起的光学击穿。研究集中在击穿过程的早期阶段,即加热激光脉冲刚结束之后。测量了激光火花柱的空间特性,并将其与夹杂物上产生的空穴的数值分析进行了比较。观察到异常长的激光火花柱。沿激光火花柱测量了空腔尺寸的分布和火花中吸收的能量。提出了一种新的基于非概率的激光击穿阈值准则,即脉冲能量产生的火花长度可以忽略不计。

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