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- W3185289969 abstract "A series of thin glass-shell shock-driven DT gas-filled capsule implosions was conducted at the OMEGA laser facility. These experiments generate conditions relevant to the central plasma during the shock-convergence phase of ablatively driven inertial confinement fusion (ICF) implosions. The spectral temperatures inferred from the DTn and DDn spectra are most consistent with a two-ion-temperature plasma, where the initial apparent temperature ratio, TTTD, is 1.5. This is an experimental confirmation of the long-standing conjecture that plasma shocks couple energy directly proportional to the species mass in multi-ion plasmas. The apparent temperature ratio trend with equilibration time matches expected thermal equilibration described by hydrodynamic theory. This indicates that deuterium and tritium ions have different energy distributions for the time period surrounding shock convergence in ignition-relevant ICF implosions.Received 19 January 2021Accepted 23 June 2021DOI:https://doi.org/10.1103/PhysRevE.104.L013201©2021 American Physical SocietyPhysics Subject Headings (PhySH)Research AreasDirect driveFusion productsHigh-energy-density plasmasIndirect driveInertial confinement fusionNuclear fusionPlasma production & heating by shock waves & compressionPlasma thermodynamicsSpace & astrophysical plasmaPlasma Physics" @default.
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- W3185289969 date "2021-07-15" @default.
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- W3185289969 title "Thermal decoupling of deuterium and tritium during the inertial confinement fusion shock-convergence phase" @default.
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- W3185289969 doi "https://doi.org/10.1103/physreve.104.l013201" @default.
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