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Study on the Two-Dimensional Density Distribution for Gas Plasmas Driven by Laser Pulse 被引量:1

Study on the Two-Dimensional Density Distribution for Gas Plasmas Driven by Laser Pulse
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摘要 We perform an experimental study of two-dimensional(2D) electron density profiles of the laser-induced plasma plumes in air by ordinarily laboratorial interferometry. The electron density distributions measured show a feature of hollow core. To illustrate the feature, we present a theoretical investigation by using dynamics analysis. In the simulation, the propagation of laser pulse with the evolution of electron density is utilized to evaluate ionization of air target for the plasma-formation stage. In the plasma-expansion stage, a simple adiabatic fluid dynamics is used to calculate the evolution of plasma outward expansion. The simulations show good agreements with experimental results, and demonstrate an effective way of determining 2D density profiles of the laser-induced plasma plume in gas. We perform an experimental study of two-dimensional(2D) electron density profiles of the laser-induced plasma plumes in air by ordinarily laboratorial interferometry. The electron density distributions measured show a feature of hollow core. To illustrate the feature, we present a theoretical investigation by using dynamics analysis. In the simulation, the propagation of laser pulse with the evolution of electron density is utilized to evaluate ionization of air target for the plasma-formation stage. In the plasma-expansion stage, a simple adiabatic fluid dynamics is used to calculate the evolution of plasma outward expansion. The simulations show good agreements with experimental results, and demonstrate an effective way of determining 2D density profiles of the laser-induced plasma plume in gas.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2016年第12期1169-1174,共6页 等离子体科学和技术(英文版)
基金 supported by National Natural Science Foundation of China(Nos.11264036,11465016 and 11364038)
关键词 laser breakdown gas plasmas 2D density distribution optical interferometry photoionization avalanche ionization laser propagation fluid dynamics laser breakdown gas plasmas 2D density distribution optical interferometry photoionization avalanche ionization laser propagation fluid dynamics
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