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Prospects for a high-field, compact break-even axisymmetric mirror (BEAM) and applications
by
Petrov, Yu.V.
, Egedal, J.
, Qian, T.
, Frank, S.
, Forest, C.B.
, Schmitz, O.
, Wallace, J.
, Furlong, K.
, Yakovlev, D.
, Anderson, J.K.
, Lindley, B.
, Yu, M.
, Pizzo, J.
, Endrizzi, D.
, Harvey, R.W.
, Sanwalka, K.
, Kirch, J.
, Ialovega, M.
in
Capital costs
/ Design engineering
/ Energy
/ Experiments
/ High temperature
/ Magnetic fields
/ Magnets
/ Materials handling
/ Neutral beams
/ Open Magnetic Systems for Plasma Confinement
/ Plasma
/ Temperature
/ Tritium
2024
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Prospects for a high-field, compact break-even axisymmetric mirror (BEAM) and applications
by
Petrov, Yu.V.
, Egedal, J.
, Qian, T.
, Frank, S.
, Forest, C.B.
, Schmitz, O.
, Wallace, J.
, Furlong, K.
, Yakovlev, D.
, Anderson, J.K.
, Lindley, B.
, Yu, M.
, Pizzo, J.
, Endrizzi, D.
, Harvey, R.W.
, Sanwalka, K.
, Kirch, J.
, Ialovega, M.
in
Capital costs
/ Design engineering
/ Energy
/ Experiments
/ High temperature
/ Magnetic fields
/ Magnets
/ Materials handling
/ Neutral beams
/ Open Magnetic Systems for Plasma Confinement
/ Plasma
/ Temperature
/ Tritium
2024
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Prospects for a high-field, compact break-even axisymmetric mirror (BEAM) and applications
by
Petrov, Yu.V.
, Egedal, J.
, Qian, T.
, Frank, S.
, Forest, C.B.
, Schmitz, O.
, Wallace, J.
, Furlong, K.
, Yakovlev, D.
, Anderson, J.K.
, Lindley, B.
, Yu, M.
, Pizzo, J.
, Endrizzi, D.
, Harvey, R.W.
, Sanwalka, K.
, Kirch, J.
, Ialovega, M.
in
Capital costs
/ Design engineering
/ Energy
/ Experiments
/ High temperature
/ Magnetic fields
/ Magnets
/ Materials handling
/ Neutral beams
/ Open Magnetic Systems for Plasma Confinement
/ Plasma
/ Temperature
/ Tritium
2024
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Prospects for a high-field, compact break-even axisymmetric mirror (BEAM) and applications
Journal Article
Prospects for a high-field, compact break-even axisymmetric mirror (BEAM) and applications
2024
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Overview
This paper explores the feasibility of a break-even-class mirror referred to as BEAM (break-even axisymmetric mirror): a neutral-beam-heated simple mirror capable of thermonuclear-grade parameters and $Q\\sim 1$ conditions. Compared with earlier mirror experiments in the 1980s, BEAM would have: higher-energy neutral beams, a larger and denser plasma at higher magnetic field, both an edge and a core and capabilities to address both magnetohydrodynamic and kinetic stability of the simple mirror in higher-temperature plasmas. Axisymmetry and high-field magnets make this possible at a modest scale enabling a short development time and lower capital cost. Such a $Q\\sim 1$ configuration will be useful as a fusion technology development platform, in which tritium handling, materials and blankets can be tested in a real fusion environment, and as a base for development of higher-$Q$ mirrors.
Publisher
Cambridge University Press,Cambridge University Press (CUP)
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