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Microwave emission from TW-100 fs laser irradiation of gas jet

机译:气体喷射的TW-100 fs激光辐射的微波发射

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A new kind of high power tunable microwave radiation source is studied theoretically and experimentally. Following the previous works presented by Dorranian et al. (2003, 2004) in this paper more details about the radiation is presented. The theory of the radiation is developed to calculate the radiation spatial distribution, and more discussion on radiation behavior and characteristics is done. In this radiation scheme, a part of large amplitude electrostatic plasma wake, generated by an intense laser pulse or a relativistic electron bunch, are converted to electromagnetic oscillations by applying a modest dc magnetic field perpendicular to the wake propagation direction. A direct one-dimensional (I D) analytic procedure for calculating the magnetized plasma wake equations is developed and the properties of the radiation are investigated theoretically. The effects of the ramp plasma-vacuum boundary in coupling the radiation from plasma to vacuum is noticed and solved by employing a gas jet flow to generate a sharp boundary. Wakefield is excited by TW-100 fs Ti:sapphire laser beam operating at 800 nm wavelength. The neutral density of gas jet flow is measured with a Mach-Zehnder interferometer. The frequency of the emitted radiation with the pulse width of 200 ps (detection limitation) is in the millimeter wave range. Radiation is polarized perpendicularly to the dc magnetic field lines and propagates in the forward direction and normal direction with respect to the laser pulse propagation direction, both perpendiculars to the direction of the applied magnetic field. Intensity of the radiation in different plasma densities and different magnetic field strengths has been observed.
机译:在理论上和实验上研究了一种新型的大功率可调谐微波辐射源。继Dorranian等人先前提出的工作之后。 (2003年,2004年),本文提出了有关辐射的更多细节。发展了辐射理论以计算辐射的空间分布,并对辐射行为和特性进行了更多讨论。在这种辐射方案中,通过施加垂直于尾波传播方向的适度dc磁场,由强激光脉冲或相对论电子束产生的大振幅静电等离子体尾波的一部分将转换为电磁振荡。建立了用于计算磁化等离子体唤醒方程的直接一维(ID)分析程序,并从理论上研究了辐射的特性。通过使用气体射流产生尖锐的边界,可以注意到并解决了倾斜的等离子体-真空边界在将等离子体的辐射耦合到真空中的作用。 Wakefield被工作在800 nm波长的TW-100 fs Ti:蓝宝石激光束激发。气体射流的中性密度用马赫曾德尔干涉仪测量。脉冲宽度为200 ps(检测极限)的发射辐射的频率在毫米波范围内。辐射垂直于dc磁场线极化,并相对于激光脉冲传播方向在正向和法线方向上传播,这两个方向均垂直于所施加磁场的方向。已经观察到在不同等离子体密度和不同磁场强度下的辐射强度。

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