HELL: High-Energy Electrons by Laser Light, a User-Oriented Experimental Platform at ELI Beamlines

HELL: High-Energy Electrons by Laser Light, a User-Oriented Experimental Platform at ELI Beamlines
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HELL:激光高能电子,ELI Beamlines 面向用户的实验平台

DOI:
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发表时间:
2018
期刊:
影响因子:
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通讯作者:
G. Korn
G. Korn
中科院分区:
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文献类型:
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作者:
T. Levato;S. Bonora;G. Grittani;C. Lazzarini;M. Nawaz;M. Nevrkla;Leonardo Villanova;R. Ziano;S. Bassanese;N. Bobrova;K. Casarin;E. Chacon;Y. Gu;D. Khikhlukha;D. Kramer;M. Lonza;D. Margarone;V. Olšovcová;M. Rosiński;B. Rus;P. Sasorov;R. Versaci;A. Zaraś;S. V. Bulanov;G. Korn

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激光尾流场加速(LWFA)是将电子束加速到高能的有效方法。这是研究基础设施的一个好处,多学科环境可以从启用的不同二级来源中受益,有机会扩大可访问的应用范围并为基础研究开发新的想法。ELI Beamline项目旨在向科学界提供此类光束,用于应用和基础研究。驱动激光器是一个Ti:Sa二极管泵浦系统,运行在10 Hz,30 J和30 fs的最大性能。在电子加速程序中考虑了使用不同焦距抛物线设置实验的可能性,以及反向传播本质同步的第二激光束的可能性。在这里,我们回顾了激光驱动的电子加速实验平台正在实施的ELI光束,地狱(高能电子激光)实验平台。
Laser wake field acceleration (LWFA) is an efficient method to accelerate electron beams to high energy. This is a benefit in research infrastructures where a multidisciplinary environment can benefit from the different secondary sources enabled, having the opportunity to extend the range of applications that is accessible and to develop new ideas for fundamental studies. The ELI Beamline project is oriented to deliver such beams to the scientific community both for applied and fundamental research. The driver laser is a Ti:Sa diode-pumped system , running at a maximum performance of 10 Hz, 30 J, and 30 fs. The possibilities to setup experiments using different focal lengths parabolas, as well as the possibility to counter-propagate a second laser beam intrinsically synchronized, are considered in the electron acceleration program. Here, we review the laser-driven electron acceleration experimental platform under implementation at ELI Beamlines, the HELL (High-energy Electrons by Laser Light) experimental platform .
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