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Laser-Driven Plasma-Based Incoherent X-Ray Sources at PALS and ELI Beamlines

机译:基于激光驱动的等离子体的PALS和ELI Beamlines基于激光的等离子体的相连X射线源

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In this paper, we report on development of incoherent secondary X-ray sources at the PALS Research Center and discuss the plan for the ELI Beamlines project. One of the approaches, how to generate ultrashort pulses of incoherent X-ray radiation, is based on the interaction of femtosecond laser pulses with underdense plasma. This method, known as laser wakefield electron acceleration (LWFA), can produce up to GeV electron beams emitting radiation in the collimated beam with a femtosecond pulse duration. This approach was theoretically and experimentally examined at the PALS Center. The parameters of the PALS Ti: Sapphire laser interaction were studied by extensive particle-in-cell (PIC) simulations with radiation postprocessors in order to evaluate the capabilities of our system in this field. The compressed air, and a mixture of helium and argon were used as accelerating medium. The accelerator was operated in the bubble regime with forced self-injection and resulted in the generation of stable relativistic electron beams with the energy up to 80 meV, hence, the betatron X-ray radiation with critical energy in the keV range was generated. The extensions of this method to the ELI Beamlines facility will enable to generate much higher X-ray energies from 10 keV up to 1 meV with 10 Hz repetition rate. Such source is suitable for various applications like phase contrast imaging or X-ray absorption experiments in a single shot.
机译:在本文中,我们报告了P​​ALS研究中心联络二级X射线源的发展,并讨论了ELI束梁项目的计划。其中一种方法,如何产生非相干X射线辐射的超短脉冲,是基于飞秒激光脉冲的相互作用与未抗孔等离子体相互作用。这种称为激光韦克菲尔德电子加速度(LWFA)的方法可以产生高于GEV电子束发射在准直光束中的辐射,其具有飞秒脉冲持续时间。在理论上并在PALS中心实验检查这种方法。 PALS TI的参数:通过具有辐射后处理的广泛的粒子 - 细胞(PIC)模拟研究了蓝宝石激光相互作用,以评估我们系统在该领域的能力。压缩空气和氦气和氩气的混合物用作加速培养基。通过强制自入射在气泡状态下在泡沫状态下操作,并导致产生高达80meV的能量的稳定相对论电子束,因此产生了与KEV范围内的临界能量的βX射线辐射。该方法对ELI Beamlines工具的扩展将使能够以10 Hz重复率从10kEV从10kEV产生更高的X射线能量。这种源适用于单次射击中的相位对比度成像或X射线吸收实验。

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