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首页> 外文期刊>Russian physics journal >Multicascade X-Ray Free-Electron Laser with Harmonic Multiplier and Two-Frequency Undulator
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Multicascade X-Ray Free-Electron Laser with Harmonic Multiplier and Two-Frequency Undulator

机译:多亿X射线自由电子激光器,具有谐波倍增器和双频波浪

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The feasibility of generation of powerful x-ray radiation by a cascade free-electron laser (FEL) with amplification of higher harmonics using a two-frequency undulator is studied. To analyze the FEL operation, a complex phenomenological single-pass FEL model is developed and used. It describes linear and nonlinear generation of harmonics in the FEL with seed laser that takes into account initial electron beam noise and describes all main losses of each harmonic in each FEL cascade. The model is also calibrated against and approved by the experimental FEL data and available results of three-dimensional numerical simulation. The electron beam in the undulator is assumed to be matched and focused, and the dynamics of power in the singlepass FEL with cascade harmonic multipliers is investigated to obtain x-ray laser radiation in the FEL having the shortest length, beam energy, and frequency of the seed laser as low as possible. In this context, the advantages of the two-frequency undulator used for generation of harmonics are demonstrated. The evolution of harmonics in a multicascade FEL with multiplication of harmonics is investigated. The operation of the cascade FEL at the wavelength lambda = 1.14 nm, generating similar to 30 MW already on 38 m with the seed laser operating at a wavelength of 11.43 nm corresponding to the maximal reflectivity of the multilayered mirror MoRu/Be coating is investigated. In addition, the operation of the multicascade FEL with accessible seed UVlaser operating at a wavelength of 157 nm (F2 excimer UV-laser) and electron beam with energy of similar to 0.5 GeV is investigated. X-ray radiation simulated in it at the wavelength lambda similar to 3.9 nm reaches power of similar to 50 MW already at similar to 27 m, which is by two orders of magnitude shorter than 3.4 km of the x-ray FEL recently put into operation in Europe.
机译:研究了使用双频率波动器的级联自由电子激光器(FEL)产生强大的X射线辐射的可行性。为了分析FEL操作,开发和使用复杂的现象单遍型坯模型。它描述了具有种子激光器中的诸如初始电子束噪声的种子激光的谐波的线性和非线性产生,并描述了每个搭配级联中每个谐波的所有主损耗。该模型还通过实验性FIL数据和三维数值模拟的可用结果校准并批准。假设起波浪器中的电子束匹配和聚焦,并且研究了具有级联谐波乘法器的单通件FEC中的电力动力学,以在具有最短长度,光束能量和频率的屈光度中获得X射线激光辐射种子激光尽可能低。在这种情况下,证明了用于产生谐波的双频波浪的优点。调查了谐波倍增的多码率谐波中的演变。研究了梯长λ= 1.14nm处的级联筋的操作,在38 m上产生类似于30mW的,种子激光器在11.43nm的波长下操作,对应于多层镜子Moru / Be涂层的最大反射率。此外,研究了具有在157nm(F2准分子UV-激光器)的波长的可接近的种子UVLASER的多脚踏纤维的操作和具有类似于0.5 GEV的能量的波长。在其上模拟的X射线辐射类似于3.9nm的波长达到类似于27米的50 mw的动力,这是最近投入运行的X射线FEL的3.4公里的两个数量级在欧洲。

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