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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Quasi-monoenergetic femtosecond photon sources from Thomson Scattering using laser plasma accelerators and plasma channels
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Quasi-monoenergetic femtosecond photon sources from Thomson Scattering using laser plasma accelerators and plasma channels

机译:使用激光等离子体加速器和等离子体通道的Thomson散射产生的准单能飞秒光子源

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摘要

Narrow bandwidth, high energy photon sources can be generated by Thomson scattering of laser light from energetic electrons, and detailed control of the interaction is needed to produce high quality sources. We present analytic calculations of the energy-angular spectra and photon yield that parametrize the influences of the electron and laser beam parameters to allow source design. These calculations, combined with numerical simulations, are applied to evaluate sources using conventional scattering in vacuum and methods for improving the source via laser waveguides or plasma channels. We show that the photon flux can be greatly increased by using a plasma channel to guide the laser during the interaction. Conversely, we show that to produce a given number of photons, the required laser energy can be reduced by an order of magnitude through the use of a plasma channel. In addition, we show that a plasma can be used as a compact beam dump, in which the electron beam is decelerated in a short distance, thereby greatly reducing radiation shielding. Realistic experimental errors such as transverse jitter are quantitatively shown to be tolerable. Examples of designs relevant to nuclear resonance fluorescence and photofission are provided.
机译:窄带高能光子源可以通过高能电子对激光的Thomson散射来产生,需要对相互作用进行详细控制才能产生高质量的源。我们介绍了能量角光谱和光子产量的解析计算,这些计算参数化了电子和激光束参数的影响,以便进行光源设计。这些计算与数值模拟相结合,可用于评估在真空中使用常规散射的光源以及通过激光波导或等离子通道改进光源的方法。我们表明,通过使用等离子体通道在相互作用期间引导激光,可以大大提高光子通量。相反,我们表明,要产生给定数量的光子,可以通过使用等离子通道将所需的激光能量减少一个数量级。另外,我们表明等离子体可以用作紧凑的束流收集器,其中电子束在短距离内减速,从而大大减少了辐射屏蔽。定量显示了现实的实验误差,例如横向抖动,是可以容忍的。提供了与核共振荧光和光裂变有关的设计实例。

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