Observation of persistent species temperature separation in inertial confinement fusion mixtures.


Journal

Nature communications
ISSN: 2041-1723
Titre abrégé: Nat Commun
Pays: England
ID NLM: 101528555

Informations de publication

Date de publication:
28 Jan 2020
Historique:
received: 05 08 2019
accepted: 17 12 2019
entrez: 30 1 2020
pubmed: 30 1 2020
medline: 30 1 2020
Statut: epublish

Résumé

The injection and mixing of contaminant mass into the fuel in inertial confinement fusion (ICF) implosions is a primary factor preventing ignition. ICF experiments have recently achieved an alpha-heating regime, in which fusion self-heating is the dominant source of yield, by reducing the susceptibility of implosions to instabilities that inject this mass. We report the results of unique separated reactants implosion experiments studying pre-mixed contaminant as well as detailed high-resolution three-dimensional simulations that are in good agreement with experiments. At conditions relevant to mixing regions in high-yield implosions, we observe persistent chunks of contaminant that do not achieve thermal equilibrium with the fuel throughout the burn phase. The assumption of thermal equilibrium is made in nearly all computational ICF modeling and methods used to infer levels of contaminant from experiments. We estimate that these methods may underestimate the amount of contaminant by a factor of two or more.

Identifiants

pubmed: 31992703
doi: 10.1038/s41467-020-14412-y
pii: 10.1038/s41467-020-14412-y
pmc: PMC6987117
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

544

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Auteurs

Brian M Haines (BM)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA. bmhaines@lanl.gov.

R C Shah (RC)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.
Laboratory for Laser Energetics, University of Rochester, 250 E. River Rd., Rochester, NY, 14623, USA.

J M Smidt (JM)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

B J Albright (BJ)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

T Cardenas (T)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

M R Douglas (MR)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

C Forrest (C)

Laboratory for Laser Energetics, University of Rochester, 250 E. River Rd., Rochester, NY, 14623, USA.

V Yu Glebov (VY)

Laboratory for Laser Energetics, University of Rochester, 250 E. River Rd., Rochester, NY, 14623, USA.

M A Gunderson (MA)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

C E Hamilton (CE)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

K C Henderson (KC)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

Y Kim (Y)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

M N Lee (MN)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

T J Murphy (TJ)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

J A Oertel (JA)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

R E Olson (RE)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

B M Patterson (BM)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

R B Randolph (RB)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

D W Schmidt (DW)

Los Alamos National Laboratory, P.O. Box 1663, MS T087, Los Alamos, NM, 87545, USA.

Classifications MeSH