Photon acceleration of an optical pulse to XUV in a beam-driven plasma wake, followed by plasma-mirror reflection and Compton scattering, yields multi-GeV gamma rays with 10^25 brilliance and high polarization.
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2026 2representative citing papers
Nonlinear plasma lenses enable a compact achromatic lattice that preserves beam emittance for several-percent energy spreads in plasma accelerator staging, with tunable R56 and better performance than magnet-based alternatives.
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Brilliant multi-GeV Compton gamma-ray source seeded by a photon accelerator
Photon acceleration of an optical pulse to XUV in a beam-driven plasma wake, followed by plasma-mirror reflection and Compton scattering, yields multi-GeV gamma rays with 10^25 brilliance and high polarization.
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Achromatic optics using nonlinear plasma lenses for beam-quality preservation between plasma-accelerator stages
Nonlinear plasma lenses enable a compact achromatic lattice that preserves beam emittance for several-percent energy spreads in plasma accelerator staging, with tunable R56 and better performance than magnet-based alternatives.