Saturation of two-plasmon decay is governed by the resonance density range, yielding a two-coefficient scaling in laser intensity for the hot-electron fraction that matches OMEGA data.
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Resonance density range governs two-plasmon decay saturation and enables hot-electron prediction in inertial confinement fusion
Saturation of two-plasmon decay is governed by the resonance density range, yielding a two-coefficient scaling in laser intensity for the hot-electron fraction that matches OMEGA data.