Publication | Open Access
Measurement of Charged-Particle Stopping in Warm Dense Plasma
131
Citations
45
References
2015
Year
EngineeringNuclear PhysicsPlasma SciencePlasma PhysicsSpace Plasma PhysicsPlasma SimulationPlasma TheoryWdm PlasmaPlasma ConfinementHigh Energy Density PhysicsPlasma DiagnosticsPhysicsApplied Plasma PhysicAtomic PhysicsElectron TemperatureNatural SciencesParticle PhysicsApplied PhysicsEnergetic ProtonsWarm Dense Plasma
We measured the stopping of energetic protons in an isochorically heated solid-density Be plasma with an electron temperature of ∼32 eV, corresponding to moderately coupled [(e^{2}/a)/(k_{B}T_{e}+E_{F})∼0.3] and moderately degenerate [k_{B}T_{e}/E_{F}∼2] "warm-dense matter" (WDM) conditions. We present the first high-accuracy measurements of charged-particle energy loss through dense plasma, which shows an increased loss relative to cold matter, consistent with a reduced mean ionization potential. The data agree with stopping models based on an ad hoc treatment of free and bound electrons, as well as the average-atom local-density approximation; this work is the first test of these theories in WDM plasma.
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