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Characterization of Undulator Radiation from a Compact Laser Plasma Acceleration Source

机译:紧凑型激光等离子体加速源起伏辐射的表征

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While synchrotron light facilities and Free Electron Lasers (FELs) arc widely used for matter investigation, Laser Plasma Acceleration (LPA), delivering nowadays GeV electron beams in few centimeter accelerating distance, can be considered to drive undulator radiation and FEL. We report on the generation of undulator radiation on the COXINEL dedicated manipulation line designed for an FEL application. The LPA large divergence is handled with variable gradient permanent magnet quadrupoles and the high energy spread is reduced via a magnetic chicane. We evidence the undulator spatio-spectral signature on the first and second harmonics while measuring the radiation focused onto the entrance slit of a spectrometer equipped with a CDD camera. A good agreement is found between measurements and SRW simulations, using electron beam parameters in the undulator deduced from the measured initial electron beam parameters transported along the beamline. In addition, ray optics approach is compared to Fourier optics for the radiation propagation through optical elements.
机译:虽然Synchrotron轻型设施和自由电子激光器(FEL)弧广泛用于物质调查,但激​​光等离子体加速度(LPA),现在可以考虑在几厘米的加速距离内输送的GEV电子束,可以考虑驱动波浪辐射和熔接。我们报告了在专为FEL应用设计的Coxinel专用操纵线上产生了出现的波动辐射。通过可变梯度永磁体四边形处理LPA大发散,并且通过磁性乳烷减小了高能量扩散。我们证明了第一和第二次谐波上的起伏器时空光谱特征,同时测量聚焦到配备CDD摄像机的光谱仪的入口狭缝的辐射。在测量和SRW模拟之间发现了一个良好的一致性,在沿着梁线传送的测量的初始电子束参数中推断出的起伏器中的电子束参数。另外,将射线光学方法与通过光学元件的辐射传播的傅立叶光学方法进行比较。

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