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Conceptual design for an hard X-ray Free Electron Laser based on CLIC X-band structure

机译:基于CLIC X波段结构的硬X射线自由电子激光的概念设计

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摘要

In this paper, a conceptual design of a hard X-ray Free-Electron Laser (FEL) facility based on CLIC-like X-band accelerating structure has been presented. The injector, based on an X-band rf gun, the main accelerating sections, using high-gradient CLIC-like structures including rf power distribution, and the two bunch compressors have been discussed. Simulations of the rf gun, of the injector, and of the linac have been performed, successfully meeting the stringent requirements in terms of minimum projected emittance, sliced emittance, and minimum bunch length. Full 6-D start-to-end linac simulations have been performed taking into account wakefield effects, misalignment of accelerator components, Coherent Synchrotron Radiation (CSR), and small dynamic variations of phase, voltage, and injection time. The performance of FEL at λ= 1 Angstrom (A) has also been evaluated for self-amplified spontaneous emission (SASE) FEL mode. A radiation power of about 10 GW has been achieved with a photon pulse length of 30 fs. The main advantage of the proposed design is that it achieved the required beam parameters in very short length, rendering the facility quite compact.
机译:在本文中,已经介绍了基于CLIC样X频带加速结构的硬X射线自由电子激光器(FEL)设施的概念设计。基于X频带RF枪的喷射器使用包括RF配电的高梯度CLIC样结构,以及已经讨论了两个束压缩机的主要加速部分。已经进行了RF枪的模拟,注射器和LINAC的模拟,成功地满足了严格的要求,以最小投影的发射率,切片发射率和最小束长。已经考虑到韦克菲尔德效应,加速器组件的错位,相干同步辐射(CSR),以及相位,电压和喷射时间的小动态变化进行了全新的6-D开始终止的LINAC模拟。还已经评估了λ= 1埃(A)的FEL的性能,用于自增大的自发发射(SASE)FEL模式。已经通过30 fs的光子脉冲长度实现了约10 gw的辐射功率。所提出的设计的主要优点是它在非常短的长度中实现了所需的光束参数,使设施非常紧凑。

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