Diagnosing Shear-Flow-Stabilized Z-pinches on the Path to Breakeven
POSTER
Abstract
Understanding of the plasmas present in Zap Energy devices has been significantly enhanced through public-private partnerships sponsored by ARPA-E. These programs have brought significant instrumentation and expertise to bear, leading to important scientific results indicating that Zap research platforms produce neutron emission from thermalized deuterium plasmas with 1—3 keV temperatures and axial extent of tens of centimeters.
Presenters
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Colin S Adams
Zap Energy Inc, Zap Energy, Virginia Tech
Authors
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Colin S Adams
Zap Energy Inc, Zap Energy, Virginia Tech
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Simon C Bott-Suzuki
University of California, San Diego
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Stephan Fuelling
University of Nevada, Reno
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Clement S Goyon
Lawrence Livermore National Laboratory
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Drew Higginson
Lawrence Livermore Natl Lab, Lawrence Livermore National Laboratory
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Aaron C Hossack
Zap Energy, Inc., Zap Energy
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Aidan W Klemmer
University of Nevada, Reno
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Aria R Johansen
Zap Energy
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Benjamin J Levitt
Zap Energy Inc.
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Harry S McLean
Lawrence Livermore Natl Lab
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James M Mitrani
Lawrence Livermore National Laboratory
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Kyle D Morgan
Zap Energy, Zap Energy Inc., Zap Energy, Inc.
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Lucas A Morton
Zap Energy Inc
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Brian A Nelson
Zap Energy Inc.
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Nolan van Rossum
Zap Energy, Inc., Zap Energy
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Rachel A Ryan
Zap Energy, Zap Energy, Inc.
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Akash P Shah
Zap Energy, Inc., Zap Energy
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Derek A Sutherland
Zap Energy, Zap Energy, Inc.
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Andrew S Taylor
Zap Energy Inc., Zap Energy
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Pi-En Tsai
Zap Energy, Zap Energy, Inc.
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Glen A Wurden
Los Alamos Natlonal Laboratory, Los Alamos National Laboratory, NM, USA
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Amanda Youmans
Lawrence Livermore natl laboratory, Lawrence Livermore National Laboratory
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William C Young
Zap Energy, Inc., Zap Energy