Status of the development of ignition capsules in the US effort to achieve thermonuclear ignition on the national ignition facility

被引:26
作者
Nobile, A.
Nikroo, A.
Cook, R. C.
Cooley, J. C.
Alexander, D. J.
Hackenberg, R. E.
Necker, C. T.
Dickerson, R. M.
Kilkenny, J. L.
Bernat, T. P.
Chen, K. C.
Xu, H.
Stephens, R. B.
Huang, H.
Haan, S. W.
Forsman, A. C.
Atherton, L. J.
Letts, S. A.
Bono, M. J.
Wilson, D. C.
机构
[1] Los Alamos Natl Lab, Los Alamos, NM 87545 USA
[2] Gen Atom Co, San Diego, CA USA
[3] Lawrence Livermore Natl Lab, Livermore, CA USA
关键词
beryllium; capsule specifications; glow discharge polymer; ignition capsule;
D O I
10.1017/S0263034606060757
中图分类号
O59 [应用物理学];
学科分类号
摘要
An important component of the U.S. effort to achieve thermonuclear ignition in 2010 on the National Ignition Facility is the development of high quality 2 mm diameter spherical capsules to function as the ablator and contain the cryogenic DT fuel. Three ignition capsule designs have been developed, and detailel fabrication specifications for each design have been established and placed under change control. A research program, with activities coordinated mainly between Lawrence Livermore, General Atomics and Los Alamos is underway to demonstrate fabrication of capsules meeting specifications. The point design for ignition campaigns beginning in 2010 is a Cu-doped Be capsule that has a radial gradient in Cu dopant level in the capsule wall. This capsule is being produced by sputter deposition of Be and Cu onto either a hollow glow discharge polymer (GDP) spherical mandrel or a solid spherical mandrel, followed by removal of the mandrel and polishing of the capsule. A key goal in the U.S. is to demonstrate fabrication of this capsule by the end of 2006. Two other ignition capsule designs are also being developed as contingencies to the point design. One contingency design is a GDP capsule that has a radial Ge dopant level in its wall. This capsule is produced by co-deposition of Ge and GDP onto a PAMS mandrel followed by thermal removal of the mandrel. The second contingency design is a uniform Cu-doped Be capsule that is fabricated from high purity fine grain Be0.3at.%Cu alloy using a precision machining route followed by polishing. Ignition targets to be fielded in 20 10 will be filled with DT fuel through a small fill hole. Laser drilling capability has been developed and used to drill approximately 5 mu m diameter holes through capsule walls for DT filling. Characterization methods necessary for characterizing capsules are being developed.
引用
收藏
页码:567 / 578
页数:12
相关论文
共 18 条
[1]   Progress in the production of materials and fabrication of NIF beryllium-copper ignition capsules at Los Alamos National Laboratory [J].
Alexander, DJ ;
Cooley, JC ;
Cameron, BJ ;
Dauelsberg, LB ;
Dickerson, RM ;
Hackenberg, RE ;
Mauro, ME ;
Nobile, A ;
Papin, PA ;
Rivera, G .
FUSION SCIENCE AND TECHNOLOGY, 2006, 49 (04) :796-801
[2]  
Alexander DJ, 2004, ULTRAFINE GRAINED MATERIALS III, P267
[3]   Production of fine-grained beryllium-6 WT% copper for fusion ignition capsules by arc melting and equal channel angular extrusion [J].
Alexander, DJ ;
Cooley, JC ;
Thoma, DJ ;
Nobile, A .
FUSION SCIENCE AND TECHNOLOGY, 2004, 45 (02) :137-143
[4]  
Bono M.J., 2004, J MANUF PROCESS, V6, P97
[5]   Progress in direct-drive fusion studies for the Laser Megajoule [J].
Canaud, B ;
Fortin, X ;
Garaude, F ;
Meyer, C ;
Philippe, F .
LASER AND PARTICLE BEAMS, 2004, 22 (02) :109-114
[6]   Fabrication of graded germanium-doped CH shells [J].
Chen, K. C. ;
Cook, R. C. ;
Huang, H. ;
Letts, S. A. ;
Nikroo, A. .
FUSION SCIENCE AND TECHNOLOGY, 2006, 49 (04) :750-756
[7]   Computational optimization of indirect-driven targets for ignition on the Iskra-6 laser facility [J].
Chizhkov, MN ;
Karlykhanov, NG ;
Lykov, VA ;
Shushlebin, AN ;
Sokolov, L ;
Timakova, MS .
LASER AND PARTICLE BEAMS, 2005, 23 (03) :261-265
[8]   Laser-ablation treatment of short-pulse laser targets:: Toward an experimental program on energetic-ion interactions with dense plasmas [J].
Fernández, JC ;
Hegelich, BM ;
Cobble, JA ;
Flippo, KA ;
Letzring, SA ;
Johnson, RP ;
Gautier, DC ;
Shimada, T ;
Kyrala, GA ;
Wang, YQ ;
Wetteland, CJ ;
Schreiber, J .
LASER AND PARTICLE BEAMS, 2005, 23 (03) :267-273
[9]  
HAAN SW, 2005, SPECIFICATIONS IGNIT
[10]   Precision manufacturing of inertial confinement fusion double shell laser targets for omega [J].
Hibbard, RL ;
Bono, MJ ;
Amendt, PA ;
Bennett, DW ;
Castro, C .
FUSION SCIENCE AND TECHNOLOGY, 2004, 45 (02) :117-123