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Controlling the Polarization and Vortex Charge of γ Photons via Nonlinear Compton Scattering

  • Jing Jing Jiang
  • , Kai Hong Zhuang
  • , Jia Ding Chen
  • , Jian Xing Li
  • , Yue Yue Chen
  • Shanghai Normal University
  • China National Nuclear Corporation

Research output: Contribution to journalArticlepeer-review

12 Scopus citations

Abstract

High-energy vortex γ photons have significant applications in many fields. However, their generation and angular momentum manipulation are still great challenges. Here, we first investigated the generation of vortex γ photons with controllable spin and orbital angular momenta via nonlinear Compton scattering of two-color counter-rotating circularly polarized (CP) laser fields. The radiation probabilities of vortex photons are calculated using the semiclassical approach that resolves angular momenta of emitted photons. We find that the angular momenta transferred to emitted photons are determined by the dominating photon absorption channel, leading to a structured spectrum with alternations in helicity and twist directions. By tuning the relative intensity ratio of the two-color CP laser fields, the polarization and vortex charge of the emitted γ photons can be controlled, enabling the generation of CP vortex γ photons with a user-defined polarization and topological charge, which may have multiple applications in nuclear physics, astrophysics, particle physics, etc.

Original languageEnglish
Article number153802
JournalPhysical Review Letters
Volume134
Issue number15
DOIs
StatePublished - 18 Apr 2025

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