Pinching of the driver beam in plasma wakefields is repurposed to inject spin-polarized electrons from hydrogen halide targets, with simulations showing 50% spin preservation across parameters.
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4 Pith papers cite this work. Polarity classification is still indexing.
verdicts
UNVERDICTED 4representative 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.
A forward neutrino detector at a muon collider can exceed current and upcoming bounds on non-standard neutrino interactions by exploiting high neutrino flux, known flavor composition, and chirality.
Simulations show radiative depolarization of high-energy witness beams in wakefield accelerators depends primarily on beam alignment with the wakefield.
citing papers explorer
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Pinching injection in wakefields for spin-polarized electron beams
Pinching of the driver beam in plasma wakefields is repurposed to inject spin-polarized electrons from hydrogen halide targets, with simulations showing 50% spin preservation across parameters.
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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.
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Non-Standard Neutrino Interactions at a Muon Collider Neutrino Detector
A forward neutrino detector at a muon collider can exceed current and upcoming bounds on non-standard neutrino interactions by exploiting high neutrino flux, known flavor composition, and chirality.
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Radiative depolarization of high-energy electron beams in wakefield accelerators
Simulations show radiative depolarization of high-energy witness beams in wakefield accelerators depends primarily on beam alignment with the wakefield.