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Polarized ultrashort brilliant multi-GeV γ-rays via single-shot laser-electron interaction

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arxiv 1907.08877 v2 pith:BEM6B7G6 submitted 2019-07-20 physics.plasm-ph

Polarized ultrashort brilliant multi-GeV γ-rays via single-shot laser-electron interaction

classification physics.plasm-ph
keywords gammarayselectronhigh-energyphotonpolarizationbeaminteraction
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Generation of circularly-polarized (CP) and linearly-polarized (LP) $\gamma$-rays via the single-shot interaction of an ultraintense laser pulse with a spin-polarized counterpropagating ultrarelativistic electron beam has been investigated in nonlinear Compton scattering in the quantum radiation-dominated regime. For the process simulation a Monte Carlo method is developed which employs the electron-spin-resolved probabilities for polarized photon emissions. We show efficient ways for the transfer of the electron polarization to the high-energy photon polarization. In particular, multi-GeV CP (LP) $\gamma$-rays with polarization of up to about 95\% can be generated by a longitudinally (transversely) spin-polarized electron beam, with a photon flux at a single shot meeting the requirements of recent proposals for the vacuum birefringence measurement in ultrastrong laser fields. Such high-energy, high-brilliance, high-polarization $\gamma$-rays are also beneficial for other applications in high-energy physics, nuclear physics, and laboratory astrophysics.

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