Increasing the areal density of N210808 implosion with thicker ablators
ORAL
Abstract
This presentation explores designs and preliminary results aimed at increasing the areal density of the hot spot and dense DT fuel piston surrounding the hot spot using thicker diamond ablators. Increasing the areal density is expected to increase the yield amplification and burn-up fraction by trapping more alpha particles and increasing the confinement time. Thicker ablators are also expected to be more robust to unintentional perturbations. We explore 4-8µm thicker HDC ablators (up to 10% thicker than N210808) using laser driver energy of 1.9 to 2.05 MJ. Future designs will also explore using up to 2.2 MJ. A main challenge will be controlling low-mode asymmetries with the thicker targets and longer laser pulses of these designs. Radiation hydrodynamic simulations showing the expected increase in areal density, impact on ignition metrics, and impact on fusion energy production using this configuration will be presented.
[1] to be submitted to Phys. Rev. Lett.
[2] Kritcher et al, to be submitted to Phys. Rev. E
[3] Zylstra et al, to be submitted to Phys. Rev. E
[4] Zylstra et al., Nature 601, 547 (2022)
[5] Kritcher et al., Nature Physics volume 18, 258 (2022)
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Presenters
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Annie L Kritcher
Lawrence Livermore National Laboratory, Lawrence Livermore Natl Lab
Authors
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Annie L Kritcher
Lawrence Livermore National Laboratory, Lawrence Livermore Natl Lab
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Alex B Zylstra
Lawrence Livermore Natl Lab
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Kelli D Humbird
Lawrence Livermore Natl Lab
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Chris Weber
Lawrence Livermore Natl Lab
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Arthur Pak
Lawrence Livermore Natl Lab
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Debra A Callahan
Lawrence Livermore National Laboratory, Lawrence Livermore Natl Lab
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Omar A Hurricane
Lawrence Livermore Natl Lab
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Daniel T Casey
Lawrence Livermore Natl Lab
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Daniel S Clark
Lawrence Livermore Natl Lab
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Alison R Christopherson
Lawrence Livermore National Laboratory, LLNL
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Laurent Divol
Lawrence Livermore Natl Lab, LLNL
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Denise E Hinkel
LLNL, Lawrence Livermore National Laboratory, Lawrence Livermore Natl Lab
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Bogdan Kustowski
Lawrence Livermore National Laboratory, Lawrence Livermore National Lab, Lawrence Livermore Natl Lab
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Otto L Landen
Lawrence Livermore Natl Lab
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Stephan A MacLaren
LLNL, Lawrence Livermore Natl Lab, Lawrence Livermore National Laboratory
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Katya Newman
Lawrence Livermore National Laboratory, Lawrence Livermore Natl Lab
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Joseph E Ralph
Lawrence Livermore Natl Lab
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Dave J Schlossberg
Lawrence Livermore National Laboratory, Lawrence Livermore Natl Lab
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Christopher V Young
Lawrence Livermore National Laboratory, Lawrence Livermore Natl Lab