3D Simulations Capture the Persistent Low-Mode Asymmetries Evident in Laser-Direct-Drive Implosions on OMEGA.


Journal

Physical review letters
ISSN: 1079-7114
Titre abrégé: Phys Rev Lett
Pays: United States
ID NLM: 0401141

Informations de publication

Date de publication:
26 Aug 2022
Historique:
received: 15 03 2022
revised: 30 06 2022
accepted: 25 07 2022
entrez: 9 9 2022
pubmed: 10 9 2022
medline: 10 9 2022
Statut: ppublish

Résumé

Spherical implosions in inertial confinement fusion are inherently sensitive to perturbations that may arise from experimental constraints and errors. Control and mitigation of low-mode (long wavelength) perturbations is a key milestone to improving implosion performances. We present the first 3D radiation-hydrodynamic simulations of directly driven inertial confinement fusion implosions with an inline package for polarized crossed-beam energy transfer. Simulations match bang times, yields (separately accounting for laser-induced high modes and fuel age), hot spot flow velocities and direction, for which polarized crossed-beam energy transfer contributes to the systematic flow orientation evident in the OMEGA implosion database. Current levels of beam mispointing, imbalance, target offset, and asymmetry from polarized crossed-beam energy transfer degrade yields by more than 40%. The effectiveness of two mitigation strategies for low modes is explored.

Identifiants

pubmed: 36083671
doi: 10.1103/PhysRevLett.129.095001
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

095001

Auteurs

A Colaïtis (A)

Centre Lasers Intenses et Applications, UMR 5107, 351 Cours de la libération, 33400 Talence, France.

D P Turnbull (DP)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

I V Igumenschev (IV)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

D Edgell (D)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

R C Shah (RC)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

O M Mannion (OM)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

C Stoeckl (C)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

D Jacob-Perkins (D)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

A Shvydky (A)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

R Janezic (R)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

A Kalb (A)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

D Cao (D)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

C J Forrest (CJ)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

J Kwiatkowski (J)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

S Regan (S)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

W Theobald (W)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

V N Goncharov (VN)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

D H Froula (DH)

Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.

Classifications MeSH