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The Nature of Emission from Optical Breakdown Induced by Pulses of fs and ns Duration

机译:fs和ns持续时间脉冲引起的光学击穿的发射性质

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Spectral emission from optical breakdown in the bulk of a transparent dielectric contains information about the nature of the breakdown medium. We have made time resolved measurements of the breakdown induced emission caused by nanosecond and femtosecond infrared laser pulses. We previously demonstrated that the emission due to ns pulses is blackbody in nature allowing determination of the fireball temperature and pressure during and after the damage event. The emission due to femtosecond pulse breakdown is not blackbody in nature; two different spectral distributions being noted. In one case, the peak spectral distribution occurs at the second harmonic of the incident radiation, in the other the distribution is broader and flatter and presumably due to continuum generation. The differences between ns and fs breakdown emission can be explained by the differing breakdown region geometries for the two pulse durations. The possibility to use spectral emission as a diagnostic of the emission region morphology will be discussed.
机译:大量透明电介质中的光击穿产生的光谱发射包含有关击穿介质性质的信息。我们已经对由纳秒和飞秒红外激光脉冲引起的击穿感应发射进行了时间分辨测量。我们先前证明了由于ns脉冲引起的发射实际上是黑体,因此可以确定损坏事件期间和之后的火球温度和压力。飞秒脉冲击穿造成的发射本质上不是黑体,而是黑体。注意到两个不同的光谱分布。在一种情况下,峰值光谱分布出现在入射辐射的二次谐波处,在另一种情况下,该分布更宽,更平坦,并且可能是由于连续谱的产生。 ns和fs击穿发射之间的差异可以通过两个脉冲持续时间不同的击穿区域几何形状来解释。将讨论使用光谱发射作为发射区形态诊断的可能性。

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