Generation of collimated vortex gamma-rays from intense Poincare beam-plasma interaction

D. Younis,B. Hafizi, D. F. Gordon

PHYSICS OF PLASMAS(2022)

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摘要
We report on numerical calculations in which a multi-petawatt gamma-ray beam is generated using a novel configuration based on fully structured light irradiating an overdense plasma waveguide. We analyze how the relativistic laser pulse efficiently confines and accelerates plasma electrons to GeV-scale energies and drives a quasi-static field that induces magneto-bremsstrahlung radiation. Multiphoton Compton scattering of electrons in the intense part of the laser also occurs although the radiated energy-density is comparatively lower. The emitted gamma-rays carry orbital angular momentum, are highly collimated, and account for upwards of 15% of the incident field energy in one particular case. A comparison of the laser-to-particle angular momentum and energy transfer efficiencies is made between the cases of irradiation by a circularly polarized Laguerre-Gauss mode and one type of full Poincare beam, and it is found that the latter yields an order-of-magnitude enhancement. The essential characteristics of the interaction are validated with three-dimensional particle-in-cell simulations that include quantum electrodynamical effects. Published under an exclusive license by AIP Publishing.
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