首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >2D hydrodynamic simulations of a variable length gas target for density down-ramp injection of electrons into a laser wakefield accelerator
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2D hydrodynamic simulations of a variable length gas target for density down-ramp injection of electrons into a laser wakefield accelerator

机译:可变长度气体靶的二维流体动力学模拟,用于将电子密度下坡注入到激光尾场加速器中

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In this work, two-dimensional (2D) hydrodynamic simulations of a variable length gas cell were performed using the open source fluid code OpenFOAM. The gas cell was designed to study controlled injection of electrons into a laser-driven wakefield at the Astra Gemini laser facility. The target consists of two compartments: an accelerator and an injector section connected via an aperture. A sharp transition between the peak and plateau density regions in the injector and accelerator compartments, respectively, was observed in simulations with various inlet pressures. The fluid simulations indicate that the length of the down-ramp connecting the sections depends on the aperture diameter, as does the density drop outside the entrance and the exit cones. Further studies showed, that increasing the inlet pressure leads to turbulence and strong fluctuations in density along the axial profile during target filling, and consequently, is expected to negatively impact the accelerator stability.
机译:在这项工作中,使用开源流体代码OpenFOAM对可变长度气室进行了二维(2D)流体动力学模拟。气室设计用于研究电子向Astra Gemini激光设备的激光驱动尾场中的受控注入。目标由两个隔室组成:加速器和通过孔连接的注入器部分。在各种进气压力下的模拟中,分别观察到了进样器和加速器隔室中峰密度和高原密度区域之间的急剧过渡。流体模拟表明,连接各部分的下降斜坡的长度取决于孔径,入口和出口锥外的密度下降也取决于孔径。进一步的研究表明,在目标填充过程中,增加进气压力会导致湍流和密度沿轴向分布的强烈波动,因此,预计会对加速器的稳定性产生负面影响。

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