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Ultrafast X-ray sources for time-resolved measurements

机译:超快的X射线源,用于时间分辨测量

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摘要

Extremely short pulse X-ray sources have attracted considerable attention for unique use in time-resolved X-ray scattering, absorption, and diffraction measurements to investigate the molecular dynamics of chemical reaction in real time. The character-istics of X-ray sources based on accelerators and femtosecond lasers are reviewed from the viewpoints of the X-ray photon energy, pulse duration, intensity and stability of the pulses, and usability of the source. The X-ray generation mechanism of each of the source is discussed from both the experimental and theoretical bases. We also demonstrate the application of ultrafast X-ray diffraction measurements in the phase transition of vanadium dioxide using the laser-induced plasma X-ray source. The series of real-time structural observations with pulsed X-ray sources contributes toward understanding the mechanism of photo-induced nonequilibrium process.
机译:极短脉冲X射线源因其在时间分辨X射线散射,吸收和衍射测量中的独特用途而引起了广泛的关注,以实时研究化学反应的分子动力学。从X射线光子能量,脉冲持续时间,脉冲强度和稳定性以及源的可用性的角度,对基于加速器和飞秒激光器的X射线源的特性进行了综述。从实验和理论两个方面讨论了每个源的X射线生成机理。我们还演示了使用激光诱导的等离子体X射线源在二氧化钒的相变中超快X射线衍射测量的应用。用脉冲X射线源进行的一系列实时结构观测有助于理解光诱导的非平衡过程的机理。

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