首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Adaptive shaping system for both spatial and temporal profiles of a highly stabilized UV laser light source for a photocathode RF gun
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Adaptive shaping system for both spatial and temporal profiles of a highly stabilized UV laser light source for a photocathode RF gun

机译:自适应整形系统,用于光电阴极RF枪的高度稳定的UV激光光源的时空分布

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We have been developing a stable and highly qualified ultraviolet (UV) laser pulse as a light source of an RF gun for an injector all is used as a photocathode. Our gun cavity is a single-cell pillbox, and the copper inner wall is used as a photocathode. The chirped pulse amplification (CPA) Ti:sapphire laser system is operated at a repetition rate of 10 Hz. At the third harmonic generation (central wavelength-263 nm), the laser pulse energy after a 45cm silica rod is up to 850 mu J/pulse. In its present status, the laser's pulse energy stability has been improved down to 0.2 similar to 0.3% at the fundamental, and 0.7-1.4% (rms, 10pps. 33,818 shots) at the third harmonic generation, respectively. This stability has been held for 1 month continuously, 24h a day. The improvements we had passively implemented were to stabilize the laser system as well as the environmental conditions. We introduced a humidity-control system kept at 50-60% in a clean room to reduce damage to the optics. In addition.. we prepared a deformable mirror for spatial shaping and a spatial light modulator based on fused-silica plates for temporal shaping. We are applying both the adaptive optics to automatic optimization of the electron beam bunch to produce lower emittance with the feedback routine. Before the improvements, the electron beam produced from a cathode suffered inhomogeneous distribution caused by the quantum efficiency effect.. and some pulse distortions caused by its response time. However, we can now freely form any arbitrary electron beam distribution Oil the surface of the cathode. (c) 2005 Elsevier B.V. All rights reserved.
机译:我们一直在开发稳定,高质量的紫外线(UV)激光脉冲,作为注射器的RF枪的光源,所有这些都用作光电阴极。我们的枪膛是一个单细胞药丸盒,铜内壁用作光电阴极。 pulse脉冲放大(CPA)Ti:蓝宝石激光系统的重复频率为10 Hz。在三次谐波产生时(中心波长为263 nm),一根45cm硅棒后的激光脉冲能量高达850μJ/脉冲。在目前的状态下,激光器的脉冲能量稳定性已降低至0.2,基本为0.3%,三次谐波产生时分别为0.7-1.4%(均方根值,10pps。33,818张)。这种稳定性每天24小时连续保持1个月。我们被动实施的改进措施是为了稳定激光系统以及环境条件。我们在洁净室中引入了湿度控制系统,该系统的湿度控制在50%至60%,以减少对光学器件的损坏。此外,我们准备了用于空间整形的可变形反射镜和基于熔融石英板的空间光调制器以进行时间整形。我们将两种自适应光学器件都应用于电子束束的自动优化,以通过反馈程序产生较低的发射率。在改进之前,由阴极产生的电子束由于量子效率效应而遭受不均匀的分布,并且由于其响应时间而引起一些脉冲畸变。但是,我们现在可以自由地在阴极表面上形成任意电子束分布。 (c)2005 Elsevier B.V.保留所有权利。

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