Improved filters for angular filter refractometry

Author:

Heuer P. V.1ORCID,Haberberger D.1ORCID,Ivancic S. T.1ORCID,Dorrer C.1ORCID,Walsh C. A.2ORCID,Davies J. R.1ORCID

Affiliation:

1. University of Rochester Laboratory for Laser Energetics 1 , 250 East River Road, Rochester, New York 14623-1299, USA

2. Lawrence Livermore National Laboratory 2 , Livermore, California 94550, USA

Abstract

Angular filter refractometry is an optical diagnostic that measures the absolute contours of a line-integrated density gradient by placing a filter with alternating opaque and transparent zones in the focal plane of a probe beam, which produce corresponding alternating light and dark regions in the image plane. Identifying transitions between these regions with specific zones on the angular filter (AF) allows the line-integrated density to be determined, but the sign of the density gradient at each transition is degenerate and must be broken using other information about the object plasma. Additional features from diffraction in the filter plane often complicate data analysis. In this paper, we present an improved AF design that uses a stochastic pixel pattern with a sinusoidal radial profile to minimize unwanted diffraction effects in the image caused by the sharp edges of the filter bands. We also present a technique in which a pair of AFs with different patterns on two branches of the same probe beam can be used to break the density gradient degeneracy. Both techniques are demonstrated using a synthetic diagnostic and data collected on the OMEGA EP (extended performance) laser.

Funder

U.S. Department of Energy

Publisher

AIP Publishing

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