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X-ray generation from slanting laser–Compton scattering for future energy-tunable Shanghai Laser Electron Gamma Source

机译:倾斜激光产生的X射线–康普顿散射,为未来可调谐的上海激光电子伽玛射线源

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摘要

There is great interest in the generation of energy-tunable, bright, short-pulse X/γ-ray sources, which are required in various research fields. Laser–Compton scattering (LCS) is considered to be one of the most promising methods to implement this kind of X/γ-ray source. At the 100-MeV LINAC of the Shanghai Institute of Applied Physics, a 2-J, 8-ns, 1064-nm, Q-switched Nd:YAG laser is brought to a slanting collision at 40° (44°) with an 112-MeV, 0.9-ns (rms) relativistic electron beam. We measured the LCS X-ray energy spectrum with a peak energy of 31.73±0.22stat±1.64syst keV and a peak width (rms) of 0.74±0.26stat±0.03syst keV. This preliminary investigation was carried out to understand the feasibility of developing an energy-tunable X/γ-ray source. Based on this study, the future Shanghai Laser Electron Gamma Source (SLEGS) at the Shanghai Synchrotron Radiation Facility (SSRF) can be constructed to be not only an energy-tunable γ-ray source by guiding the laser incident angle from laser–Compton scattering, but also a high flux (∼1010 photons/s or even higher) γ-ray source by adding a laser super-cavity.
机译:产生能量可调的,明亮的,短脉冲的X /γ射线源引起了人们极大的兴趣,这是各个研究领域所需要的。激光康普顿散射(LCS)被认为是实现这种X /γ射线源的最有前途的方法之一。在上海应用物理研究所的100MeV LINAC上,将2英寸,8 ns,1064纳米,调Q开关的Nd:YAG激光与112°在40°(44°)倾斜碰撞-MeV,0.9 ns(rms)相对论电子束。我们测量的LCS X射线能谱的峰值能量为31.73±0.22 stat ±1.64 syst keV,峰宽(rms)为0.74±0.26 stat ±0.03 syst keV。进行此初步调查是为了了解开发能量可调X /γ射线源的可行性。根据这项研究,通过指导激光-康普顿散射的激光入射角,可以将上海同步加速器辐射设施(SSRF)上的未来上海激光电子伽玛射线源(SLEGS)构造成不仅是能量可调的γ射线源。但是,通过添加激光超腔,它也是一个高通量(〜10 10 光子/秒甚至更高)的γ射线源。

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