URI | http://purl.tuc.gr/dl/dias/236D5DFA-A5AC-435C-BC3E-F07924DF3F0D | - |
Αναγνωριστικό | https://www.cambridge.org/core/journals/high-power-laser-science-and-engineering/article/avalanche-boron-fusion-by-laser-picosecond-block-ignition-with-magnetic-trapping-for-clean-and-economic-reactor/4F1B200F1C8C1CD4FA68845294925C6D | - |
Αναγνωριστικό | https://doi.org/10.1017/hpl.2016.29 | - |
Γλώσσα | en | - |
Μέγεθος | 9 pages | en |
Τίτλος | Avalanche boron fusion by laser picosecond block ignition with magnetic trapping for clean and economic reactor | en |
Δημιουργός | Hora Heinrich | en |
Δημιουργός | Korn George | en |
Δημιουργός | Eliezer, Shalom | en |
Δημιουργός | Nissim Noaz | en |
Δημιουργός | Lalousis, Paraskevas | en |
Δημιουργός | Giuffrida Lorenzo | en |
Δημιουργός | Margarone, Daniele | en |
Δημιουργός | Picciotto Antonino | en |
Δημιουργός | Miley, George Hunter 1933- | en |
Δημιουργός | Moustaizis Stavros | en |
Δημιουργός | Μουσταιζης Σταυρος | el |
Δημιουργός | Martínez Val, José María | en |
Δημιουργός | Barty, Christopher P.J | en |
Δημιουργός | Kirchhoff Gotz J. | en |
Εκδότης | Cambridge University Press | en |
Περίληψη | Measured highly elevated gains of proton-boron (HB11) fusion (Picciotto et al., Phys. Rev. X 4, 031030 (2014)) confirmed the exceptional avalanche reaction process (Lalousis et al., Laser Part. Beams 32, 409 (2014); Hora et al., Laser Part. Beams 33, 607 (2015)) for the combination of the non-Thermal block ignition using ultrahigh intensity laser pulses of picoseconds duration. The ultrahigh acceleration above for plasma blocks was theoretically and numerically predicted since 1978 (Hora, Physics of Laser Driven Plasmas (Wiley, 1981), pp. 178 and 179) and measured (Sauerbrey, Phys. Plasmas 3, 4712 (1996)) in exact agreement (Hora et al., Phys. Plasmas 14, 072701 (2007)) when the dominating force was overcoming thermal processes. This is based on Maxwell's stress tensor by the dielectric properties of plasma leading to the nonlinear (ponderomotive) force resulting in ultra-fast expanding plasma blocks by a dielectric explosion. Combining this with measured ultrahigh magnetic fields and the avalanche process opens an option for an environmentally absolute clean and economic boron fusion power reactor. This is supported also by other experiments with very high HB11 reactions under different conditions (Labaune et al., Nature Commun. 4, 2506 (2013)). | en |
Τύπος | Peer-Reviewed Journal Publication | en |
Τύπος | Δημοσίευση σε Περιοδικό με Κριτές | el |
Άδεια Χρήσης | http://creativecommons.org/licenses/by/4.0/ | en |
Ημερομηνία | 2018-11-22 | - |
Ημερομηνία Δημοσίευσης | 2016 | - |
Θεματική Κατηγορία | Boron fusion energy | en |
Θεματική Κατηγορία | Dielectric nonlinear force explosion | en |
Θεματική Κατηγορία | Economic reactor | en |
Θεματική Κατηγορία | Environmentally clean energy | en |
Θεματική Κατηγορία | Picosecond-non-Thermal plasma block ignition | en |
Βιβλιογραφική Αναφορά | H. Hora, G. Korn, S. Eliezer, N. Nissim, P. Lalousis, L. Giuffrida, D. Margarone, A. Picciotto, G. H. Miley, S. Moustaizis, J.-M. Martinez-Val, C. P. J. Barty and G. J. Kirchhoff, "Avalanche boron fusion by laser picosecond block ignition with magnetic trapping for clean and economic reactor," High Power Laser Sci. Eng., vol. 4, 2016. doi: 10.1017/hpl.2016.29 | en |