期刊文献+

Optimal laser intensity profiles for a uniform target illumination in direct-drive inertial confinement fusion 被引量:1

Optimal laser intensity profiles for a uniform target illumination in direct-drive inertial confinement fusion
原文传递
导出
摘要 A numerical method providing the optimal laser intensity profiles for a direct-drive inertial confinement fusion scheme has been developed. The method provides an alternative approach to phase-space optimization studies, which can prove computationally expensive. The method applies to a generic irradiation configuration characterized by an arbitrary number NBof laser beams provided that they irradiate the whole target surface, and thus goes beyond previous analyses limited to symmetric configurations. The calculated laser intensity profiles optimize the illumination of a spherical target.This paper focuses on description of the method, which uses two steps: first, the target irradiation is calculated for initial trial laser intensities, and then in a second step the optimal laser intensities are obtained by correcting the trial intensities using the calculated illumination. A limited number of example applications to direct drive on the Laser Mega Joule(LMJ) are described. A numerical method providing the optimal laser intensity profiles for a direct-drive inertial confinement fusion scheme has been developed. The method provides an alternative approach to phase-space optimization studies, which can prove computationally expensive. The method applies to a generic irradiation configuration characterized by an arbitrary number NBof laser beams provided that they irradiate the whole target surface, and thus goes beyond previous analyses limited to symmetric configurations. The calculated laser intensity profiles optimize the illumination of a spherical target.This paper focuses on description of the method, which uses two steps: first, the target irradiation is calculated for initial trial laser intensities, and then in a second step the optimal laser intensities are obtained by correcting the trial intensities using the calculated illumination. A limited number of example applications to direct drive on the Laser Mega Joule(LMJ) are described.
出处 《High Power Laser Science and Engineering》 SCIE CAS 2014年第4期62-67,共6页 高功率激光科学与工程(英文版)
基金 partially supported by the EURATOM/CIEMAT association in the framework of the ‘IFE Keep-in-Touch Activities’
关键词 direct DRIVE INERTIAL CONFINEMENT fusion laser system direct drive inertial confinement fusion laser system
  • 相关文献

参考文献1

二级参考文献10

  • 1V. Brandon,B. Canaud,M. Temporal,R. Ramis.Low initial aspect-ratio direct-drive target designs for shock- or self-ignition in the context of the laser Megajoule[J].Nuclear Fusion.2014(8)
  • 2Mauro Temporal,Benoit Canaud,Warren J. Garbett,Franck Philippe,Rafael Ramis.Polar direct drive illumination uniformity provided by the Orion facility[J].The European Physical Journal D.2013(10)
  • 3O Klimo,V T Tikhonchuk.Laser–plasma interaction studies in the context of shock ignition: the regime dominated by parametric instabilities[J].Plasma Physics and Controlled Fusion.2013(9)
  • 4P Koester,L Antonelli,S Atzeni,J Badziak,F Baffigi,D Batani,C A Cecchetti,T Chodukowski,F Consoli,G Cristoforetti,R De Angelis,G Folpini,L A Gizzi,Z Kalinowska,E Krousky,M Kucharik,L Labate,T Levato,R Liska,G Malka,Y Maheut,A Marocchino,P Nicolai,T O’Dell,P Parys,T Pisarczyk,P Raczka,O Renner,Y J Rhee,X Ribeyre,M Richetta,M Rosinski,L Ryc,J Skala,A Schiavi,G Schurtz,M Smid,C Spindloe,J Ullschmied,J Wolowski,A Zaras.Recent results from experimental studies on laser–plasma coupling in a shock ignition relevant regime[J].Plasma Physics and Controlled Fusion.2013(12)
  • 5B. Canaud,S. Laffite,V. Brandon,M. Temporal.2D analysis of direct-drive shock-ignited HiPER-like target implosions with the full laser megajoule[J].Laser and Particle Beams.2012(2)
  • 6M. Temporal,V. Brandon,B. Canaud,J.P. Didelez,R. Fedosejevs,R. Ramis.Ignition conditions for inertial confinement fusion targets with a nuclear spin-polarized DT fuel[J].Nuclear Fusion.2012(10)
  • 7M Temporal,R Ramis,B Canaud,V Brandon,S Laffite,B J Le Garrec.Irradiation uniformity of directly driven inertial confinement fusion targets in the context of the shock-ignition scheme[J].Plasma Physics and Controlled Fusion.2011(12)
  • 8S. Jacquemot,F. Amiranoff,S.D. Baton,J.C. Chanteloup,C. Labaune,M. Koenig,D.T. Michel,F. Perez,H.P. Schlenvoigt,B. Canaud,C. Cherfils Clérouin,G. Debras,S. Depierreux,J. Ebrardt,D. Juraszek,S. Lafitte,P. Loiseau,J.L. Miquel,F. Philippe,C. Rousseaux,N. Blanchot,C.B. Edwards,P. Norreys,S. Atzeni,A. Schiavi,J. Breil,J.L. Feugeas,L. Hallo,M. Lafon,X. Ribeyre,J.J. Santos,G. Schurtz,V. Tikhonchuk,A. Debayle,J.J. Honrubia,M. Temporal,D. Batani,J.R. Davies,F. Fiuza,R.A. Fonseca,L.O. Silva,L.A. Gizzi,P. Koester,L. Labate,J. Badziak,O. Klimo.Studying ignition schemes on European laser facilities[J].Nuclear Fusion.2011(9)
  • 9R. Ramis,K. Eidmann,J. Meyer-ter-Vehn,S. Hüller.MULTI-fs – A computer code for laser–plasma interaction in the femtosecond regime[J].Computer Physics Communications.2011(3)
  • 10A R Bell,M Tzoufras.Electron transport and shock ignition[J].Plasma Physics and Controlled Fusion.2011(4)

共引文献3

同被引文献1

引证文献1

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部