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- W4310660211 abstract "We report on measurements of the ion-electron energy-transfer cross section utilizing low-velocity ion stopping in high-energy-density plasmas at the OMEGA laser facility. These measurements utilize a technique that leverages the close relationship between low-velocity ion stopping and ion-electron equilibration. Shock-driven implosions of capsules filled with $mathrm{D}phantom{rule{0.16em}{0ex}}^{3}mathrm{He}$ gas doped with a trace amount of argon are used to generate densities and temperatures in ranges from $1ifmmodetimeselsetexttimesfi{}{10}^{23}$ to $2ifmmodetimeselsetexttimesfi{}{10}^{24} {mathrm{cm}}^{ensuremath{-}3}$ and from 1.4 to 2.5 keV, respectively. The energy loss of 1-MeV DD tritons and 3.7-MeV $mathrm{D}phantom{rule{0.16em}{0ex}}^{3}mathrm{He}$ alphas that have velocities lower than the average velocity of the thermal electrons is measured. The energy loss of these ions is used to determine the ion-electron energy-transfer cross section, which is found to be in excellent agreement with quantum-mechanical calculations in the first Born approximation. This result provides an experimental constraint on ion-electron energy transfer in high-energy-density plasmas, which impacts the modeling of alpha heating in inertial confinement fusion implosions, magnetic-field advection in stellar atmospheres, and energy balance in supernova shocks." @default.
- W4310660211 created "2022-12-14" @default.
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- W4310660211 date "2022-11-08" @default.
- W4310660211 modified "2023-09-26" @default.
- W4310660211 title "Measurements of ion-electron energy-transfer cross section in high-energy-density plasmas" @default.
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- W4310660211 doi "https://doi.org/10.1103/physreve.106.l053201" @default.
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