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Laser-Plasma - Accelerator-Driven Quasi - Monoenergetic MeV Thomson Photon Source and Laser Facility

机译:激光等离子体-加速器驱动的准-单能MeV汤姆逊光子源和激光设备

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In this report, we demonstrate precise control of a laser plasma accelerator (LPA) through characterization of a shock-induced density downramp injector. Experiments systematically varied the shock injector profile, including shock angle, shock position, up-ramp width, and acceleration length. As a result, an electron beam that was highly tunable from 30 to 300 MeV with 8.5% energy spread, 1.5 mrad divergence and 0.35 mrad pointing fluctuation was produced. We also report the progress of a project focusing on demonstrating the crucial enablers of a compact LPA based MeV Thomson photon source in an integrated experiment and a dedicated 100 TW laser facility built at the Berkeley Lab Laser Accelerator (BELLA) Center, Lawrence Berkeley National Laboratory (LBNL).
机译:在本报告中,我们演示了通过表征激振引起的密度下降的喷油器来精确控制激光等离子体加速器(LPA)的过程。实验系统地改变了减震器的外形,包括减震角,减震位置,上升沿宽度和加速长度。结果,产生了在30 MeV到300 MeV高度可调的电子束,具有8.5%的能量散布,1.5 mrad的发散度和0.35 mrad的指向波动。我们还报告了一个项目的进展,该项目的重点是在集成实验和劳伦斯伯克利国家实验室的伯克利实验室激光加速器(BELLA)中心建造的专用100 TW激光设施中,论证基于LPA的紧凑型MeV Thomson光子源的关键促成因素。 (LBNL)。

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