Diagnosis of the imploding shell asymmetry in polar-direct-drive deuterium–tritium cryogenic target implosions on OMEGA

Author:

Joshi T. R.1ORCID,Shah R. C.1,Theobald W.1ORCID,Churnetski K.1ORCID,Radha P. B.1ORCID,Cao D.1,Thomas C. A.1,Baltazar J.1ORCID,Regan S. P.1ORCID

Affiliation:

1. Laboratory for Laser Energetics, University of Rochester, Rochester, New York 14623, USA

Abstract

We discuss the analyses of gated, x-ray imaging data from polar-direct-drive experiments with cryogenically layered deuterium–tritium targets on the OMEGA laser. The in-flight shell asymmetries were diagnosed at various times during the implosion, which was caused by the beam pointing geometry and preimposed variations in the energy partition between the different groups of laser beams. The shape of the ablation surface during the acceleration phase of the implosion was measured along two different lines of sight, and a Legendre mode ( ℓ-mode) decomposition was applied for modes of up to ten to investigate shell asymmetries. A clear causal relationship between the imposed beam imbalance and the shape of the in-flight shell asymmetries was observed. The imploded shell with a balanced energy ratio shows smaller values of the amplitudes of ℓ-mode 2 compared to that from implosions with an imbalanced ring energy ratio. The amplitudes of ℓ-modes 4 and 6 are the same within the measurement uncertainty with respect to the change in beam energy ratio.

Funder

U.S. Department of Energy

University of Rochester

New York State Energy Research and Development Authority

Publisher

AIP Publishing

Subject

Instrumentation

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