2nd and 3rd order spectral energy corrections with penumbral de-blurring methodology for opacity platform used on the National Ignition Facility

Author:

Dutra E. C.1ORCID,Emig J.2,Fontes C. J.3ORCID,Heeter R. F.2ORCID,Opachich Y. P.2ORCID,Robey H. F.3,Wallace M. S.1ORCID,Perry T. S.3ORCID

Affiliation:

1. Nevada National Security Site, Livermore Operations, Livermore, California 94550, USA

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

3. Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA

Abstract

The Opacity Spectrometer (OpSpec) used in the National Ignition Facility’s opacity experiments measures x-ray spectra from 0.9 to 2.1 keV from the different experimental regions: the backlight source, emission source, and the absorption region with the transmission calculated from these regions. The OpSpec designs have gone through several iterations to help improve the signal-to-noise ratio, remove alternate crystal plane reflections, and improve spectral resolution, which helps to increase the validity of the opacity measurements. However, the source spans well outside the current working spectral range, and higher-order reflections are intrinsic to the crystal, which increases the overall signal seen in the data regions. The recorded data are the convolution of 1st order transmission, higher-order reflections, and the penumbra blurring. This work represents the details for deconvolving the 2nd and 3rd order spectral energy corrections with a penumbral de-blurring to correct the relative measurement of x-ray intensity of different spectral energies and further analysis of datasets relevant to the opacity experiments.

Funder

Lawrence Livermore National Laboratory

Los Alamos National LaboratoryDirected Research and Development Program

Sandia National Laboratory

Nevada National Security Site, Mission Support and Test Services

Publisher

AIP Publishing

Subject

Instrumentation

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