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Operating plasma density issues on large-scale laser-plasma accelerators toward high-energy frontier

机译:大型激光等离子体加速器向高能前沿的工作等离子体密度问题

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Consideration of laser-driven plasma-based electron/positron accelerators with a 2 TeV center-of-mass energy is presented, employing a multistaging scheme consisting of successive multi-GeV laser wakefield accelerators operated at the plasma density range of ${10}^{15}--{10}^{18}ext{ }ext{ }{mathrm{cm}}^{ensuremath{-}3}$ in the quasilinear regime. A total accelerator length is determined by an operating plasma density and a coupling distance allowed for both laser and beam focusing systems. We investigate beam dynamics and synchrotron radiation due to the betatron oscillation of the beam in laser-plasma acceleration, characterizing the beam qualities such as energy spread and transverse emittance. According to the criteria on the beam qualities for applications and available laser sources, the operating plasma density will be optimized. We note that in the low density operation the required wall-plug power for the laser driver will be much reduced in comparison with the high-density options.
机译:提出了考虑采用2 TeV质量中心能量的激光驱动的基于等离子体的电子/正电子加速器的方法,该方法采用了一种多阶段方案,该方案由在$ {10} ^的等离子体密度范围内运行的连续多GeV激光尾场加速器组成在准线性状态下,{15}-{10} ^ {18} text {} text {} { mathrm {cm}} ^ { ensuremath {-} 3} $。加速器的总长度取决于激光和光束聚焦系统的工作等离子体密度和耦合距离。我们研究了由于激光等离子加速中光束的自激加速器振荡而引起的光束动力学和同步加速器辐射,从而表征了光束质量,例如能量扩散和横向发射。根据有关应用和可用激光源的光束质量标准,将优化工作等离子体密度。我们注意到,在低密度操作中,与高密度选项相比,激光驱动器所需的墙插电源将大大降低。

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