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Thermophysics Characterization of Multiply Ionized Air Plasma Absorption of Laser Radiation

机译:激光辐射的多重电离空气等离子体吸收的热物理特征

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Thermodynamic properties of multiply ionized air plasma atoms are computed using hydrogenic approximation of the electronic partition function for temperatures up to 1,500,000 K, to study the impact of multiple ionization of air plasma on the inverse Bremsstrahlung absorption of laser radiation. Three formulas of inverse Bremsstrahlung absorption are investigated, and a general electron-ion inverse Bremsstrahlung formula is derived for multispecies, multiple ionization absorption. The computed double ionization absorption coefficients agree reasonably well with those of literature for 1, 10, and 100 atm. The importance of multiple ionization modeling is demonstrated by finding that the area under the full ionization absorption curve is twice that of single ionization. The effect of pressure on fully ionized air plasma absorption is computed for five pressures: 0.01, 0.1, 1, 10, and 100 atm.
机译:使用电子分隔函数的氢近似值对高达1,500,000 K的温度使用氢离子近似计算了多个电离的空气等离子体原子的热力学性质,以研究空气等离子体的多次电离对Bre致辐射的逆辐射吸收的影响。研究了Bre致辐射逆吸收的三个公式,并推导了多物种,多电离吸收的一般电子离子Bre致逆吸收公式。计算得出的双电离吸收系数与文献中关于1、10和100 atm的吸收系数相当吻合。通过发现完整电离吸收曲线下的面积是单次电离的两倍,证明了多次电离建模的重要性。针对五个压力计算了压力对完全电离的空气等离子体吸收的影响:0.01、0.1、1、10和100 atm。

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