论文标题
Attosond Betatron辐射脉冲列车
Attosecond betatron radiation pulse train
论文作者
论文摘要
高强度X射线源是科学,技术和医学的必要诊断工具。这样的X射线源可以在激光 - 血浆加速器中产生,在该激光器脉冲中,电子在激光脉冲的等离子体唤醒中散发出短波辐射。当代可用的betatron辐射X射线源可以从几微米的源大小的几个飞秒的订单上提供准确的X射线脉冲。在本文中,我们通过粒子中的模拟证明了这种来源的时间分辨率可以通过数量级来增强通过发射相对论电子束的空间调制。通过该电子束与共同传播激光束的相互作用来实现调制,从而导致一系列等距的亚前X射线脉冲的生成。火车的单个脉冲之间的距离通过调制激光脉冲的波长调节。建模的实验设置是可以通过当前技术实现的。潜在的应用包括超快基本过程的频道采样。
High-intensity X-ray sources are essential diagnostic tools for science, technology and medicine. Such X-ray sources can be produced in laser-plasma accelerators, where electrons emit short-wavelength radiation due to their betatron oscillations in the plasma wake of a laser pulse. Contemporary available betatron radiation X-ray sources can deliver a collimated X-ray pulse of duration on the order of several femtoseconds from a source size of the order of several micrometres. In this paper we demonstrate, through particle-in-cell simulations, that the temporal resolution of such a source can be enhanced by an order of magnitude by a spatial modulation of the emitting relativistic electron bunch. The modulation is achieved by the interaction of the that electron bunch with a co-propagating laser beam which results in the generation of a train of equidistant sub-femtosecond X-ray pulses. The distance between the single pulses of a train is tuned by the wavelength of the modulation laser pulse. The modelled experimental setup is achievable with current technologies. Potential applications include stroboscopic sampling of ultrafast fundamental processes.