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Electron temperature versus laser intensity times wavelength squared: a comparison of theory and experiments

机译:电子温度与激光强度乘以波长平方的关系:理论与实验的比较

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摘要

The peak temperature in the corona of plasma ejected by a laser-irradiated slab is discussed in terms of a one-electron-temperature model. Both heat-flux saturation and pulse rise-time effects are considered;the intensity in the rising half of the pulse is approximated by a linear function of time, I(t) = Iot/r. The temperature is found to be proportional to (IQX2)273 and a function of I0X4/r. Above a certain value of I0X4/T, the plasma presents two characteristic temperatures (at saturation and at the critical surface) which can be identified with experimentally observed cold- and hot-electron temperatures. The results are compared with extensive experimental data available for both nd and CO2 lasers, I0(W'cnf2) X2 (/um) starting around 1012. The agreement is good if substantial flux inhibition is assumed (flux-limit factor f = 0.03), and fails for I0X2 above 1O1S. Results for both ablation pressure and mass ablation rate are also given.
机译:根据单电子温度模型讨论了激光辐照平板喷射的等离子体电晕的峰值温度。同时考虑了热通量饱和度和脉冲上升时间的影响;脉冲上升一半中的强度通过时间的线性函数I(t)= Iot / r来近似。发现温度与(IQX2)273成比例,并且是I0X4 / r的函数。高于I0X4 / T的特定值时,等离子体呈现两个特征温度(处于饱和和临界表面),可以通过实验观察到的冷电子和热电子温度来识别。将结果与可用于nd和CO2激光器的大量实验数据进行比较,I0(W'cnf2)X2(/ um)始于1012年。如果假设有显着的通量抑制,则一致性很好(通量限制因子f = 0.03) ,并且对于高于1O1S的I0X2失败。还给出了烧蚀压力和质量烧蚀率的结果。

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