论文标题

相对论等离子体镜来源极为强烈的量子真空过程

Quantum vacuum processes in the extremely intense light of relativistic plasma mirror sources

论文作者

Sainte-Marie, Antonin, Fedeli, Luca, Zaïm, Neïl, Karbstein, Felix, Vincenti, Henri

论文摘要

Petawatt-Class激光系统的出现允许在受控环境中产生前所未有的强度的电磁场,从而通过与量子真空的互动来促进越来越多的努力来探测但前所未有的过程。尽管如此,控制这些效果的最低强度量表仍在预见能力之外的数量级,因此预计这种努力将保持极具挑战性。然而,近年来,血浆反射镜已经成为横跨该差距的有前途的桥梁,它可以使强烈的红外激光脉冲转化为位于X-UV范围内的相干聚焦的多普勒谐波光束。在这项工作中,我们对当将这些光束聚焦到$ 10^{24} $和$ 10^{28} \\ Mathrm {w.cm}^{ - 2} $之间的强度介绍强度时,介绍了产生的量子真空特征的定量预测。这些特征是使用大量并行数值工具获得的,其中包括光子光子散射和电子峰值对创建。鉴于识别实验上有利的配置,我们还考虑了聚焦的谐波光束与辅助光束的耦合,并与其他已建立的方案进行了比较。我们的结果表明,单个相干聚焦的谐波光束可以产生与正面碰撞中的两个红外脉冲一样多的散射光子,并确认谐波束与辅助光束的耦合会增加无弹性散射的显着水平,因此,在实验室中,具有很大的潜在提高了可在实验人中的可达到的信号对噪声比率。

The advent of Petawatt-class laser systems allows generating electro-magnetic fields of unprecedented strength in a controlled environment, driving increasingly more efforts to probe yet unobserved processes through their interaction with the quantum vacuum. Still, the lowest intensity scale governing these effects lies orders of magnitude beyond foreseen capabilities, so that such endeavor is expected to remain extremely challenging. In recent years, however, plasma mirrors have emerged as a promising bridge across this gap, by enabling the conversion of intense infrared laser pulses into coherently focused Doppler harmonic beams lying in the X-UV range. In this work, we present quantitative predictions on the quantum vacuum signatures produced when such beams are focused to intensities between $10^{24}$ and $10^{28}\ \mathrm{W.cm}^{-2}$ . These signatures, which notably include photon-photon scattering and electron-positron pair creation, are obtained using state-of-the-art massively parallel numerical tools. In view of identifying experimentally favorable configurations, we also consider the coupling of the focused harmonic beam with an auxiliary optical beam, and provide comparison with other established schemes. Our results show that a single coherently focused harmonic beam can produce as much scattered photons as two infrared pulses in head-on collision, and confirm that the coupling of the harmonic beam to an auxiliary beam gives rise to significant levels of inelastic scattering, and hence holds the potential to strongly improve the attainable signal to noise ratios in experiments.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源