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首页> 外文期刊>Applied optics >Time-resolved spectral and spatial description of laser-induced breakdown in air as a pulsed, bright, and broadband ultraviolet-visible light source
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Time-resolved spectral and spatial description of laser-induced breakdown in air as a pulsed, bright, and broadband ultraviolet-visible light source

机译:时间分辨光谱和空间描述作为脉冲,明亮和宽带紫外可见光源的空气中激光引起的击穿

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摘要

The optical breakdown induced in air at atmospheric pressure by Nd:YAG Q-switched laser pulses is studied in terms of the spectral features of the emitted radiation in the wavelength range 180-850 nm during the first 200 ns after the laser pulse onset. During the plasma build up, radiation emission features intense, broadband, and structureless ultraviolet-visible spectra before the appearence of atomic lines on the microsecond scale. Also, the emitting plasma kernel, imaged during the buildup and decay stages in the early tens of nanoseconds, turns out to have a size of similar to 0.3 mm and a volume of similar to 0.02 mm(3). The coupling of direct emission data and broadband absorption measurements allowed us to retrieve peak values of electron temperature above 100,000 K and of an optical depth of the order of unity, under the assumptions of local thermodynamic equilibrium and a homogeneous kernel. The simultaneous occurrence of such temporal, spatial, and spectral features of the plasma kernel suggests its exploitation as a pulsed, bright, and broadband ultraviolet-visible light source. (C) 1998 Optical Society of America. [References: 12]
机译:研究了Nd:YAG调Q激光脉冲在大气压力下在空气中引起的光学击穿,根据在激光脉冲开始后的前200 ns内波长范围为180-850 nm的辐射的光谱特征。在等离子体累积期间,辐射发射具有强烈的,宽带的和无结构的紫外可见光谱,然后才出现微秒级的原子线。同样,在数十纳秒的早期的累积和衰减阶段成像的发射等离子体核,其大小类似于0.3 mm,体积类似于0.02 mm(3)。在局部热力学平衡和均质核的假设下,直接发射数据和宽带吸收测量的耦合使我们能够检索高于100,000 K的电子温度的峰值和1的光学深度的峰值。等离子体核的这种时间,空间和光谱特征的同时出现表明其被用作脉冲,明亮和宽带的紫外可见光源。 (C)1998年美国眼镜学会。 [参考:12]

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