Multiplication Processes in High-Density H- 11 B Fusion Fuel
Proton-boron fusion would offer considerable advantages for the purpose of energy production as the reaction is aneutronic and does not involve radioactive species. Its exploitation, however, appears to be particularly challenging due to the low reactivity of the H- 11 B fuel at temperatures up to 1...
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Veröffentlicht in: | Laser and particle beams 2022, Vol.2022, Article e11 |
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container_title | Laser and particle beams |
container_volume | 2022 |
creator | Belloni, Fabio Batani, Katarzyna |
description | Proton-boron fusion would offer considerable advantages for the purpose
of energy production as the reaction is aneutronic and does not involve
radioactive species. Its exploitation, however, appears to be particularly
challenging due to the low reactivity of the H-
11
B fuel
at temperatures up to 100 keV. Fusion chain-reaction concepts have been
proposed as possible means to overcome this limitation. Relevant findings
are reviewed in this article. Energy-amplification processes are also
presented, which are of interest for beam-fusion experiments and fast
ignition of H-
11
B fuel. Directions for further work are
outlined as well. |
doi_str_mv | 10.1155/2022/3952779 |
format | Article |
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of energy production as the reaction is aneutronic and does not involve
radioactive species. Its exploitation, however, appears to be particularly
challenging due to the low reactivity of the H-
11
B fuel
at temperatures up to 100 keV. Fusion chain-reaction concepts have been
proposed as possible means to overcome this limitation. Relevant findings
are reviewed in this article. Energy-amplification processes are also
presented, which are of interest for beam-fusion experiments and fast
ignition of H-
11
B fuel. Directions for further work are
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of energy production as the reaction is aneutronic and does not involve
radioactive species. Its exploitation, however, appears to be particularly
challenging due to the low reactivity of the H-
11
B fuel
at temperatures up to 100 keV. Fusion chain-reaction concepts have been
proposed as possible means to overcome this limitation. Relevant findings
are reviewed in this article. Energy-amplification processes are also
presented, which are of interest for beam-fusion experiments and fast
ignition of H-
11
B fuel. Directions for further work are
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of energy production as the reaction is aneutronic and does not involve
radioactive species. Its exploitation, however, appears to be particularly
challenging due to the low reactivity of the H-
11
B fuel
at temperatures up to 100 keV. Fusion chain-reaction concepts have been
proposed as possible means to overcome this limitation. Relevant findings
are reviewed in this article. Energy-amplification processes are also
presented, which are of interest for beam-fusion experiments and fast
ignition of H-
11
B fuel. Directions for further work are
outlined as well.</abstract><doi>10.1155/2022/3952779</doi><orcidid>https://orcid.org/0000-0003-2529-7667</orcidid><oa>free_for_read</oa></addata></record> |
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language | eng |
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source | DOAJ Directory of Open Access Journals; EZB-FREE-00999 freely available EZB journals; Alma/SFX Local Collection |
title | Multiplication Processes in High-Density H- 11 B Fusion Fuel |
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