Результаты исследований: Публикации в книгах, отчётах, сборниках, трудах конференций › статья в сборнике материалов конференции › Рецензирование
Laser-plasma booster for ion post acceleration. / Satoh, D.; Kawata, S.; Takahashi, K.; Izumiyama, T.; Barada, D.; Ma, Y. Y.; Kong, Q.; Wang, P. X.; Wang, W. M.; Li, Y. T.; Sheng, Z. M.; Klimo, O.; Limpouch, J.; Andreev, A. A.
IFSA 2011 - 7th International Conference on Inertial Fusion Sciences and Applications. 2013. 17013 (EPJ Web of Conferences; Том 59).Результаты исследований: Публикации в книгах, отчётах, сборниках, трудах конференций › статья в сборнике материалов конференции › Рецензирование
}
TY - GEN
T1 - Laser-plasma booster for ion post acceleration
AU - Satoh, D.
AU - Kawata, S.
AU - Takahashi, K.
AU - Izumiyama, T.
AU - Barada, D.
AU - Ma, Y. Y.
AU - Kong, Q.
AU - Wang, P. X.
AU - Wang, W. M.
AU - Li, Y. T.
AU - Sheng, Z. M.
AU - Klimo, O.
AU - Limpouch, J.
AU - Andreev, A. A.
PY - 2013
Y1 - 2013
N2 - A remarkable ion energy increase is demonstrated for post acceleration by a laser-plasma booster. An intense short-pulse laser generates a strong current by high-energy electrons accelerated, when this intense short-pulse laser illuminates a plasma target. The strong electric current creates a strong magnetic field along the high-energy electron current in plasma. During the increase phase in the magnetic field, a longitudinal inductive electric field is induced for the forward ion acceleration by the Faraday law. Our 2.5-dimensional particle-in-cell simulations demonstrate a remarkable increase in ion energy by several tens of MeV.
AB - A remarkable ion energy increase is demonstrated for post acceleration by a laser-plasma booster. An intense short-pulse laser generates a strong current by high-energy electrons accelerated, when this intense short-pulse laser illuminates a plasma target. The strong electric current creates a strong magnetic field along the high-energy electron current in plasma. During the increase phase in the magnetic field, a longitudinal inductive electric field is induced for the forward ion acceleration by the Faraday law. Our 2.5-dimensional particle-in-cell simulations demonstrate a remarkable increase in ion energy by several tens of MeV.
UR - http://www.scopus.com/inward/record.url?scp=84891307833&partnerID=8YFLogxK
U2 - 10.1051/epjconf/20135917013
DO - 10.1051/epjconf/20135917013
M3 - Conference contribution
AN - SCOPUS:84891307833
SN - 9782759810772
T3 - EPJ Web of Conferences
BT - IFSA 2011 - 7th International Conference on Inertial Fusion Sciences and Applications
T2 - 7th International Conference on Inertial Fusion Sciences and Applications, IFSA 2011
Y2 - 12 September 2011 through 16 September 2011
ER -
ID: 85660339