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Laser induced Compton Scattering to Dark Photon or Axion-like Particle
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The laser of an intense electromagnetic field provides an important tool to study the strong-field particle physics. The nonlinear Compton scattering was observed in the collision of an ultra-relativistic electron beam with a laser pulse in 1990s. The precision measurement of the nonlinear Compton scattering shines the light on the studies of strong-field QED and nonlinear effects in QED. In this work, we propose to produce new massive particles through the nonlinear Compton scattering in the presence of a high intense laser field. We take dark photon or axion-like particle as illustrative new particle. Compared with other collider and beam dump experiments, the laser induced process provides a complementary and competitive search of new invisible particles lighter than 1 MeV.
Forward citations
Cited by 2 Pith papers
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Searching for long-lived ALPs with a laser-assisted optical dump
A laser-assisted optical dump could probe ALP-electron couplings down to ~10^-6 (10^-7) GeV^-1 with 16.5 (125) GeV electron beams, and when both couplings are present the Primakoff process improves the electron-coupli...
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Laser induced Compton Scattering to Dark Matter in Effective Field Theory
Electrons struck by an intense laser can decay into a light dark matter pair; at LUXE this could probe EFT cutoffs near 1 GeV for dimension-6 operators and 10^3-10^4 GeV for dipole operators with dark matter below 1 MeV.
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