Electric field effect on the relaxation of a plasma grating induced by two femtosecond lasers in air

IF 1.3 Q3 ORTHOPEDICS Plasma Research Express Pub Date : 2020-05-19 DOI:10.1088/2516-1067/ab906c
A. I. Mahdy
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Abstract

We propose a mathematical model to study the effect of an external electric field on the relaxation of a Traveling Plasma Grating (TPG) that is induced by the filamentation of two femtosecond laser beams in air plasma. The main purpose of this study is to examine the role of the applied electric field on the relaxation-delay of the formed plasma grating (PG) and to investigate the consequences of this delay on the efficiency of the energy exchange between these beams. The proposed model employs two coupled 2D envelope-equations in conjunction with a kinetic electron balance and an electron energy conservation equation to study the relaxation of the induced PG in the molecular air structure. The employed equations have been numerically solved and the simulation results have revealed that the presence of the electric field widely prolongs the electron density decay period and largely extends the electron temperature relaxation time of the induced PG at different molecular structures, furthermore it increases the energy exchange ratio between the two fs beams on these air structures.
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两个飞秒激光在空气中诱导等离子体光栅的电场效应
我们提出了一个数学模型来研究外部电场对两个飞秒激光束在空气等离子体中成丝引起的行波等离子体光栅(TPG)弛豫的影响。本研究的主要目的是检验所施加的电场对所形成的等离子体光栅(PG)的弛豫延迟的作用,并研究这种延迟对这些光束之间的能量交换效率的影响。所提出的模型采用两个耦合的2D包络方程以及动力学电子平衡和电子能量守恒方程来研究分子空气结构中诱导PG的弛豫。对所采用的方程进行了数值求解,模拟结果表明,电场的存在大大延长了不同分子结构下诱导PG的电子密度衰减期,极大地延长了电子温度弛豫时间,并且增加了两个fs束在这些空气结构上的能量交换比。
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来源期刊
Plasma Research Express
Plasma Research Express Energy-Nuclear Energy and Engineering
CiteScore
2.60
自引率
0.00%
发文量
15
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