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Ludwigsen, A P; Carey, R W; Demaret, R D; Lagin, L J; Reddi, U P; Van Arsdall, P J
Lawrence Livermore National Lab., Livermore, CA (United States). Funding organisation: US Department of Energy (United States)2007
Lawrence Livermore National Lab., Livermore, CA (United States). Funding organisation: US Department of Energy (United States)2007
AbstractAbstract
[en] We have developed a new target platform to study Laser Plasma Interaction in ignition-relevant condition at the Omega laser facility (LLE/Rochester)[1]. By shooting an interaction beam along the axis of a gas-filled hohlraum heated by up to 17 kJ of heater beam energy, we were able to create a millimeter-scale underdense uniform plasma at electron temperatures above 3 keV. Extensive Thomson scattering measurements allowed us to benchmark our hydrodynamic simulations performed with HYDRA [1]. As a result of this effort, we can use with much confidence these simulations as input parameters for our LPI simulation code pF3d [2]. In this paper, we show that by using accurate hydrodynamic profiles and full three-dimensional simulations including a realistic modeling of the laser intensity pattern generated by various smoothing options, fluid LPI theory reproduces the SBS thresholds and absolute reflectivity values and the absence of measurable SRS. This good agreement was made possible by the recent increase in computing power routinely available for such simulations
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3 Oct 2007; 7 p; International Conference on Accelerator and Large Experimental Physics Control Systems (ICALEPCS 2007); Knoxville, TN (United States); 15-19 Oct 2007; W-7405-ENG-48; Available from https://e-reports-ext.llnl.gov/pdf/353188.pdf; PURL: https://www.osti.gov/servlets/purl/922311-kXBS3t/; PDF-FILE: 7; SIZE: 0.1 MBYTES
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