Literature DB >> 21034046

Design of dynamic Hohlraum opacity samples to increase measured sample density on Z.

T J Nash1, G A Rochau, J E Bailey.   

Abstract

We are attempting to measure the transmission of iron on Z at plasma temperatures and densities relevant to the solar radiation and convection zone boundary. The opacity data published by us to date has been taken at an electron density about a factor of 10 below the 9×10(22)/cm(3) electron density of this boundary. We present results of two-dimensional (2D) simulations of the heating and expansion of an opacity sample driven by the dynamic Hohlraum radiation source on Z. The aim of the simulations is to design foil samples that provide opacity data at increased density. The inputs or source terms for the simulations are spatially and temporally varying radiation temperatures with a Lambertian angular distribution. These temperature profiles were inferred on Z with on-axis time-resolved pinhole cameras, x-ray diodes, and bolometers. A typical sample is 0.3 μm of magnesium and 0.078 μm of iron sandwiched between 10 μm layers of plastic. The 2D LASNEX simulations indicate that to increase the density of the sample one should increase the thickness of the plastic backing.

Entities:  

Year:  2010        PMID: 21034046     DOI: 10.1063/1.3483230

Source DB:  PubMed          Journal:  Rev Sci Instrum        ISSN: 0034-6748            Impact factor:   1.523


  1 in total

1.  A higher-than-predicted measurement of iron opacity at solar interior temperatures.

Authors:  J E Bailey; T Nagayama; G P Loisel; G A Rochau; C Blancard; J Colgan; Ph Cosse; G Faussurier; C J Fontes; F Gilleron; I Golovkin; S B Hansen; C A Iglesias; D P Kilcrease; J J MacFarlane; R C Mancini; S N Nahar; C Orban; J-C Pain; A K Pradhan; M Sherrill; B G Wilson
Journal:  Nature       Date:  2015-01-01       Impact factor: 49.962

  1 in total

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