Measurement of early time outer laser beam reflection inside a cylindrical hohlraum at the National Ignition Facility

Author:

Chen Hui1ORCID,Woods D. T.1ORCID,Lemos N.1ORCID,Rosen M.1ORCID,Landen O. L.1ORCID,Milovich J. L.1ORCID,Schneider M. B.1ORCID,Trosseille C.1ORCID,Delora-Ellefson J.1ORCID,Hardy M.1,Hash N.1ORCID,Hinkel D. E.1ORCID,Holder J.1ORCID,Izumi N.1ORCID,Masters N.1ORCID,Montgomery W.1ORCID,Moody J. D.1ORCID,Newman K.1ORCID,Rogers S.1,Ross J. S.1ORCID,Smalyuk V.1ORCID,Weber C.1ORCID,Zobrist T.1ORCID

Affiliation:

1. Lawrence Livermore National Laboratory , Livermore, California 94550, USA

Abstract

In a National Ignition Facility (NIF) cylindrical hohlraum, any specular reflection (“glint”) off the wall from the outer cone (incident angle of 50° and 44° relative to the surface of the wall) laser beam will irradiate the capsule poles. If the glint power is sufficiently large during the picket (early time) of the laser pulse, it may seed high-mode perturbations on the capsule surface that can grow during the implosion. To quantify the glint power on the capsule during the picket by the outer beams, we performed dedicated experiments on NIF using a flat witness foil as a surrogate for the capsule in a half-hohlraum target. We found that the measured glint power is approximately comparable to simulations using a nominal electron conduction flux limiter of f = 0.15, and over an order of magnitude lower than that predicted using f = 0.03 in the wall. Based on our current understanding, we conclude that the glint from the outer beams plays an insignificant role in capsule drive asymmetry.

Funder

Lawrence Livermore National Laboratory

Publisher

AIP Publishing

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