论文标题
电子束 - 莫尔列碰撞中极度致密的伽马射线脉冲
Extremely Dense Gamma-Ray Pulses in Electron Beam-Multifoil Collisions
论文作者
论文摘要
高能光子的来源在几乎所有研究领域都有重要的应用。然而,对于几百keV的光子能量,现有源的光子通量和强度受到了极大的限制。在这里,我们表明,高电流的超层流电子束与多个亚微米厚度 - 导电箔相互作用,可以经历强烈的自我关注,并伴随着有效的伽马射线同步光子光子的有效发射。在物理上,自我关注和高能量光子发射来自梁的相互作用,与伴随梁翼碰撞的近场过渡辐射相互作用。这种近场辐射的幅度与梁自形相当,并且可以足够强大,以使单个发射光子可以携带很大一部分发射电子能。光束与多个箔相碰撞后,获得超过数量密度的飞秒准直的电子和光子梁。该伽马射线源的相对简单性,独特的特性和高效率为应用和基础研究开辟了新的机会,包括对具有单一电子束的强场QED过程的激光研究。
Sources of high-energy photons have important applications in almost all areas of research. However, the photon flux and intensity of existing sources is strongly limited for photon energies above a few hundred keV. Here we show that a high-current ultrarelativistic electron beam interacting with multiple submicrometer-thick conducting foils can undergo strong self-focusing accompanied by efficient emission of gamma-ray synchrotron photons. Physically, self-focusing and high-energy photon emission originate from the beam interaction with the near-field transition radiation accompanying the beam-foil collision. This near field radiation is of amplitude comparable with the beam self-field, and can be strong enough that a single emitted photon can carry away a significant fraction of the emitting electron energy. After beam collision with multiple foils, femtosecond collimated electron and photon beams with number density exceeding that of a solid are obtained. The relative simplicity, unique properties, and high efficiency of this gamma-ray source open up new opportunities for both applied and fundamental research including laserless investigations of strong-field QED processes with a single electron beam.