Diagnosing low-mode (ℓ < 6) and mid-mode (6 ≤ ℓ ≤ 60) asymmetries in the post-stagnation phase of laser-direct-drive deuterium–tritium cryogenic implosions on OMEGA

Author:

Baltazar J.12ORCID,Betti R.12,Churnetski K.12ORCID,Gopalaswamy V.1ORCID,Knauer J. P.1,Patel D.1,Rinderknecht H. G.1ORCID,Shah R. C.1ORCID,Stoeckl C.1ORCID,Williams C. A.1ORCID,Regan S. P.12ORCID

Affiliation:

1. Laboratory for Laser Energetics, University of Rochester, Rochester, New York 14623-1299, USA

2. Department of Mechanical Engineering, University of Rochester, Rochester, New York 14611, USA

Abstract

Low- and mid-mode perturbations are possible candidates for performance limitations in cryogenic direct-drive implosions on the OMEGA laser at the Laboratory of Laser Energetics. Simulations with a 3D hydrocode demonstrated that hotspot imagers do not show evidence of the shell breakup in the dense fuel. However, these same simulations revealed that the low- and mid-mode perturbations in the dense fuel could be diagnosed more easily in the post-stagnation phase of the implosion by analyzing the peak in the x-ray emission limb at the coronal–fuel interface than before or at the stagnation phase. In experiments, the asymmetries are inferred from gated images of the x-ray emission of the implosion by using a 16-pinhole array imager filtered to record x-ray energies >800 eV and an x-ray framing camera with 40-ps time integration and 20- μm spatial resolution. A modal analysis is applied to the spatial distribution of the x-ray emission from deuterium and tritium cryogenic implosions on OMEGA recorded after the bang time to diagnose the low- and mid-mode asymmetries, and to study the effect that the beam-to-target ratio ( Rb/ Rt) has on the shell integrity.

Funder

National Nuclear Security Administration

Publisher

AIP Publishing

Subject

Instrumentation

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