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Laser-generated spark morphology and temperature records from emission and Rayleigh scattering studies

机译:发射和瑞利散射研究产生的激光火花形态和温度记录

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Using both Rayleigh scattering and time-resolved emission spectroscopy, we have recorded the spatial and temporal evolution of laser-generated sparks in argon from changes during the first tens of nanoseconds to complete dissipation, which occurs in a time span of approximately 5 ms. Maps of either emission intensity or argon density spanning the entire region affected by the energy deposited by the laser show the dissipation of the spark in detail. Immediately after ignition, the argon plasma occupies an ellipsoidal volume of roughly 3-mm vertical (axial) length. After approximately 20-40 μs, the spark region has transformed into a toroidal shape in a plane perpendicular to the vertical axis, with a radius of approximately 1.5 mm. The torus rises slowly up and expands noticeably in the radial direction. A record of peak temperatures of the spark ranging from approximately 10,000 K at 60-μs delay time to approximately 450 K at 4-ms delay time indicate cooling rates from approximately 100 to 1 K/μs at these times.
机译:使用瑞利散射和时间分辨发射光谱,我们已经记录了氩气中激光产生的火花的空间和时间演变,从最初的几十纳秒内的变化到完全耗散,这发生在大约5毫秒的时间范围内。整个强度范围内的发射强度或氩气密度的映射图都详细显示了火花的耗散,该区域受激光沉积的能量影响。点燃后,氩等离子体立即占据大约3毫米垂直(轴向)长度的椭圆形体积。在大约20-40μs之后,火花区域在垂直于垂直轴的平面中以大约1.5 mm的半径转化为环形形状。圆环缓慢上升,并在径向上明显扩展。火花峰值温度的记录范围从60μs延迟时间的大约10,000 K到4ms延迟时间的大约450 K,表明在这些时间冷却速率从大约100到1 K /μs。

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    《Applied optics》 |2003年第6期|共7页
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