首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Resonantly laser induced plasmas in gases: The role of energy pooling and exothermic collisions in plasma breakdown and heating
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Resonantly laser induced plasmas in gases: The role of energy pooling and exothermic collisions in plasma breakdown and heating

机译:气体中共振激光诱导的等离子体:能量分解和放热碰撞在等离子体分解和加热中的作用

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摘要

The present work is a systematic experimental study of the plasma formation in cesium vapor induced by a continuous laser tuned to the resonance transition 6S_(1/2)-6P_(3/2). Taking into account the measured absolute population densities of Cs ground and excited state atoms as well as the electron densities derived from Stark broadening of the Cs lines, complete local thermodynamic equilibrium in the laser-produced plasma was found for laser power densities ≈10 Wcm~(-2) at cesium ground state number densities of about 10~(17)cm~(-3). Direct conversion of the excitation energy or parts of the excitation energy in exothermic collisions of laser-excited atoms is concluded to be the major process for atomic vapor heating and subsequent formation of LTE plasmas.
机译:目前的工作是对铯蒸气中等离子体形成的系统实验研究,该铯蒸气是由调谐到共振跃迁6S_(1/2)-6P_(3/2)的连续激光引起的。考虑到测得的Cs基态和激发态原子的绝对总体密度以及Cs线的Stark加宽所产生的电子密度,发现激光产生的等离子体中的完全局部热力学平衡约为10 Wcm〜 (-2)在铯基态数密度约为10〜(17)cm〜(-3)。得出结论,在激光激发原子的放热碰撞中,激发能或部分激发能的直接转化是原子蒸气加热和随后形成LTE等离子体的主要过程。

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