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Design of an inertial fusion experiment exceeding the Lawson criterion for ignition

Author(s)
Kritcher, A.L.; Zylstra, A.B.; Callahan, D.A.; Hurricane, O.A.; Weber, C.R.; Clark, D.S.; Young, C.V; Ralph, J.E.; Casey, D.T.; Pak, A.; Landen, O.L.; Bachmann, B.; Baker, K.L.; Berzak Hopkins, L.; Bhandarkar, S.D.; Biener, J.; Bionta, R.M.; Birge, N.W.; Braun, T.; Briggs, T.M.; Celliers, P.M.; Chen, H.; Choate, C.; Divol, L.; Döppner, T.; Fittinghoff, D.; Edwards, M.J.; Gatu Johnson, Maria; Gharibyan, N.; Haan, S.; Hahn, K.D.; Hartouni, E.; Hinkel, D.E.; Ho, D.D.; Hohenberger, M.; Holder, J.P.; Huang, H.; Izumi, N.; Jeet, J.; Jones, O.; Kerr, S.M.; Khan, S.F.; Geppert Kleinrath, H.; Geppert Kleinrath, V.; Kong, C.; Lamb, K.M.; Le Pape, S.; Lemos, N.C.; Lindl, J.D.; MacGowan, B.J.; Mackinnon, A.J.; MacPhee, A.G.; Marley, E.V.; Meaney, K.; Millot, M.; Moore, A.S.; Newman, K.; Di Nicola, J.-M. G.; Nikroo, A.; Nora, R.; Patel, P.K.; Rice, N.G.; Rubery, M.S.; Sater, J.; Schlossberg, D.J.; Sepke, S.M.; Sequoia, K.; Shin, S.J.; Stadermann, M.; Stoupin, S.; Strozzi, D.J.; Thomas, C.A.; Tommasini, R.; Trosseille, C.; Tubman, E.R.; Volegov, P.L.; Wild, C.; Woods, D.T.; Yang, S.T.; ... Show more Show less
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Abstract
We present the design of the first igniting fusion plasma in the laboratory by Lawson’s criterion that produced 1.37 MJ of fusion energy, Hybrid-E experiment N210808 (August 8, 2021) [Phys. Rev. Lett. 129, 075001 (2022)]. This design uses the indirect drive inertial confinement fusion approach to heat and compress a central “hot spot” of deuterium-tritium (DT) fuel using a surrounding dense DT fuel piston. Ignition occurs when the heating from absorption of α particles created in the fusion process overcomes the loss mechanisms in the system for a duration of time. This letter describes key design changes which enabled a ∼3–6× increase in an ignition figure of merit (generalized Lawson criterion) [Phys. Plasmas 28, 022704 (2021), Phys. Plasmas 25, 122704 (2018)]) and an eightfold increase in fusion energy output compared to predecessor experiments. We present simulations of the hot-spot conditions for experiment N210808 that show fundamentally different behavior compared to predecessor experiments and simulated metrics that are consistent with N210808 reaching for the first time in the laboratory “ignition.”
Description
Submitted for publication in Physical Review E
Date issued
2022-05
URI
https://hdl.handle.net/1721.1/158635
Department
Massachusetts Institute of Technology. Plasma Science and Fusion Center
Journal
Physical Review E
Publisher
APS
Other identifiers
22ja017

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