Laguerre-Gaussian pulses for spin-polarized ion beam acceleration
Laguerre-Gaussian pulses for spin-polarized ion beam acceleration
Polarized particle sources have a plethora of applications, ranging from deep-inelastic scattering to nuclear fusion. One crucial challenge in laser-plasma interaction is maintaining the initial polarization of the target. Here, we propose the acceleration of spin-polarized Helium-3 from near-critical density targets using high-intensity Laguerre-Gaussian laser pulses. Three-dimensional particle-in-cell simulations show that Magnetic Vortex Acceleration with these modes yields higher polarization on the 90%-level compared to conventional Gaussian laser pulses, while also providing low-divergence beams.
Lars Reichwein、Tong-Pu Yu、Alexander Pukhov、Markus Büscher
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Lars Reichwein,Tong-Pu Yu,Alexander Pukhov,Markus Büscher.Laguerre-Gaussian pulses for spin-polarized ion beam acceleration[EB/OL].(2025-05-08)[2025-06-13].https://arxiv.org/abs/2505.05337.点此复制
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