First experimental data show that 3He nuclear polarization persists after laser-plasma acceleration to MeV energies.
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Estimates indicate that kW-scale Raman pumping at 895 nm can produce 80% polarized Cs vapor for charge-transfer generation of intense nuclear spin-polarized H isotope negative ion beams suitable for fusion applications.
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Preservation of $^3\mkern-2mu$He ion polarization after laser-plasma acceleration
First experimental data show that 3He nuclear polarization persists after laser-plasma acceleration to MeV energies.
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Production of Intense Spin-Polarized Beams of Hydrogen Isotopes by Charge Transfer with High Density Raman-Pumped Alkali-Metal Vapors
Estimates indicate that kW-scale Raman pumping at 895 nm can produce 80% polarized Cs vapor for charge-transfer generation of intense nuclear spin-polarized H isotope negative ion beams suitable for fusion applications.