非线性康普顿散射中与偏振相关的干涉

IF 5.3 2区 物理与天体物理 Q1 Physics and Astronomy
Zu-dong Zhao, Suo Tang
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引用次数: 0

摘要

研究了高能电子与激光在中强区碰撞产生的非线性康普顿散射中的相位干涉效应,揭示了干涉效应对散射光子的重要性敏感地取决于散射光子与激光脉冲的相对极化。平行于激光场偏振的散射光子,干涉相位点之间的有效距离比垂直偏振光子大得多。为了表征势实验中的相位干涉效应,我们引入了双脉冲散射场景,并表明两个相分离脉冲之间的干涉可以显著调节散射光子的能量-动量分布,导致散射光子能谱的重塑。通过缩小散射光子的角度接受度,光谱调制可以被放大和持续,从而在两个脉冲之间实现实验可实现的相位分离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polarization-dependent interference in nonlinear Compton scattering
We investigate the phase interference effects in the nonlinear Compton scattering via the collision between a high-energy electron and the laser in the intermediate intensity region, and reveal that the importance of interference effects on the scattered photons depends sensitively on the relative polarization of the scattered photons and laser pulse. For scattered photons polarized parallel to the laser field, the effective distance between two interfered phase points is much larger than that for perpendicularly polarized photons. To signalize the phase interference effect in potential experiments, we introduce the double-pulse scenario for the scattering process, and show that the interference between two phase-separated pulses could significantly modulate the energy-momentum distribution of the scattered photons, leading to the reshaping of the scattered photons’ energy spectrum. By narrowing the angular acceptance of the scattered photons, the spectral modulation can be amplified and sustained for an experiment-realizable phase separation between two pulses.
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来源期刊
Physical Review D
Physical Review D 物理-天文与天体物理
CiteScore
9.20
自引率
36.00%
发文量
0
审稿时长
2 months
期刊介绍: Physical Review D (PRD) is a leading journal in elementary particle physics, field theory, gravitation, and cosmology and is one of the top-cited journals in high-energy physics. PRD covers experimental and theoretical results in all aspects of particle physics, field theory, gravitation and cosmology, including: Particle physics experiments, Electroweak interactions, Strong interactions, Lattice field theories, lattice QCD, Beyond the standard model physics, Phenomenological aspects of field theory, general methods, Gravity, cosmology, cosmic rays, Astrophysics and astroparticle physics, General relativity, Formal aspects of field theory, field theory in curved space, String theory, quantum gravity, gauge/gravity duality.
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