Literature DB >> 21405580

Demonstration of ignition radiation temperatures in indirect-drive inertial confinement fusion hohlraums.

S H Glenzer1, B J MacGowan, N B Meezan, P A Adams, J B Alfonso, E T Alger, Z Alherz, L F Alvarez, S S Alvarez, P V Amick, K S Andersson, S D Andrews, G J Antonini, P A Arnold, D P Atkinson, L Auyang, S G Azevedo, B N M Balaoing, J A Baltz, F Barbosa, G W Bardsley, D A Barker, A I Barnes, A Baron, R G Beeler, B V Beeman, L R Belk, J C Bell, P M Bell, R L Berger, M A Bergonia, L J Bernardez, L V Berzins, R C Bettenhausen, L Bezerides, S D Bhandarkar, C L Bishop, E J Bond, D R Bopp, J A Borgman, J R Bower, G A Bowers, M W Bowers, D T Boyle, D K Bradley, J L Bragg, J Braucht, D L Brinkerhoff, D F Browning, G K Brunton, S C Burkhart, S R Burns, K E Burns, B Burr, L M Burrows, R K Butlin, N J Cahayag, D A Callahan, P S Cardinale, R W Carey, J W Carlson, A D Casey, C Castro, J R Celeste, A Y Chakicherla, F W Chambers, C Chan, H Chandrasekaran, C Chang, R F Chapman, K Charron, Y Chen, M J Christensen, A J Churby, T J Clancy, B D Cline, L C Clowdus, D G Cocherell, F E Coffield, S J Cohen, R L Costa, J R Cox, G M Curnow, M J Dailey, P M Danforth, R Darbee, P S Datte, J A Davis, G A Deis, R D Demaret, E L Dewald, P Di Nicola, J M Di Nicola, L Divol, S Dixit, D B Dobson, T Doppner, J D Driscoll, J Dugorepec, J J Duncan, P C Dupuy, E G Dzenitis, M J Eckart, S L Edson, G J Edwards, M J Edwards, O D Edwards, P W Edwards, J C Ellefson, C H Ellerbee, G V Erbert, C M Estes, W J Fabyan, R N Fallejo, M Fedorov, B Felker, J T Fink, M D Finney, L F Finnie, M J Fischer, J M Fisher, B T Fishler, J W Florio, A Forsman, C B Foxworthy, R M Franks, T Frazier, G Frieder, T Fung, G N Gawinski, C R Gibson, E Giraldez, S M Glenn, B P Golick, H Gonzales, S A Gonzales, M J Gonzalez, K L Griffin, J Grippen, S M Gross, P H Gschweng, G Gururangan, K Gu, S W Haan, S R Hahn, B J Haid, J E Hamblen, B A Hammel, A V Hamza, D L Hardy, D R Hart, R G Hartley, C A Haynam, G M Heestand, M R Hermann, G L Hermes, D S Hey, R L Hibbard, D G Hicks, D E Hinkel, D L Hipple, J D Hitchcock, D L Hodtwalker, J P Holder, J D Hollis, G M Holtmeier, S R Huber, A W Huey, D N Hulsey, S L Hunter, T R Huppler, M S Hutton, N Izumi, J L Jackson, M A Jackson, K S Jancaitis, D R Jedlovec, B Johnson, M C Johnson, T Johnson, M P Johnston, O S Jones, D H Kalantar, J H Kamperschroer, R L Kauffman, G A Keating, L M Kegelmeyer, S L Kenitzer, J R Kimbrough, K King, R K Kirkwood, J L Klingmann, K M Knittel, T R Kohut, K G Koka, S W Kramer, J E Krammen, K G Krauter, G W Krauter, E K Krieger, J J Kroll, K N La Fortune, L J Lagin, V K Lakamsani, O L Landen, S W Lane, A B Langdon, S H Langer, N Lao, D W Larson, D Latray, G T Lau, S Le Pape, B L Lechleiter, Y Lee, T L Lee, J Li, J A Liebman, J D Lindl, S F Locke, H K Loey, R A London, F J Lopez, D M Lord, R R Lowe-Webb, J G Lown, A P Ludwigsen, N W Lum, R R Lyons, T Ma, A J MacKinnon, M D Magat, D T Maloy, T N Malsbury, G Markham, R M Marquez, A A Marsh, C D Marshall, S R Marshall, I L Maslennikov, D G Mathisen, G J Mauger, M -Y Mauvais, J A McBride, T McCarville, J B McCloud, A McGrew, B McHale, A G MacPhee, J F Meeker, J S Merill, E P Mertens, P A Michel, M G Miller, T Mills, J L Milovich, R Miramontes, R C Montesanti, M M Montoya, J Moody, J D Moody, K A Moreno, J Morris, K M Morriston, J R Nelson, M Neto, J D Neumann, E Ng, Q M Ngo, B L Olejniczak, R E Olson, N L Orsi, M W Owens, E H Padilla, T M Pannell, T G Parham, R W Patterson, G Pavel, R R Prasad, D Pendlton, F A Penko, B L Pepmeier, D E Petersen, T W Phillips, D Pigg, K W Piston, K D Pletcher, C L Powell, H B Radousky, B S Raimondi, J E Ralph, R L Rampke, R K Reed, W A Reid, V V Rekow, J L Reynolds, J J Rhodes, M J Richardson, R J Rinnert, B P Riordan, A S Rivenes, A T Rivera, C J Roberts, J A Robinson, R B Robinson, S R Robison, O R Rodriguez, S P Rogers, M D Rosen, G F Ross, M Runkel, A S Runtal, R A Sacks, S F Sailors, J T Salmon, J D Salmonson, R L Saunders, J R Schaffer, T M Schindler, M J Schmitt, M B Schneider, K S Segraves, M J Shaw, M E Sheldrick, R T Shelton, M K Shiflett, S J Shiromizu, M Shor, L L Silva, S A Silva, K M Skulina, D A Smauley, B E Smith, L K Smith, A L Solomon, S Sommer, J G Soto, N I Spafford, D E Speck, P T Springer, M Stadermann, F Stanley, T G Stone, E A Stout, P L Stratton, R J Strausser, L J Suter, W Sweet, M F Swisher, J D Tappero, J B Tassano, J S Taylor, E A Tekle, C Thai, C A Thomas, A Thomas, A L Throop, G L Tietbohl, J M Tillman, R P J Town, S L Townsend, K L Tribbey, D Trummer, J Truong, J Vaher, M Valadez, P Van Arsdall, A J Van Prooyen, E O Vergel de Dios, M D Vergino, S P Vernon, J L Vickers, G T Villanueva, M A Vitalich, S A Vonhof, F E Wade, R J Wallace, C T Warren, A L Warrick, J Watkins, S Weaver, P J Wegner, M A Weingart, J Wen, K S White, P K Whitman, K Widmann, C C Widmayer, K Wilhelmsen, E A Williams, W H Williams, L Willis, E F Wilson, B A Wilson, M C Witte, K Work, P S Yang, B K Young, K P Youngblood, R A Zacharias, T Zaleski, P G Zapata, H Zhang, J S Zielinski, J L Kline, G A Kyrala, C Niemann, J D Kilkenny, A Nikroo, B M Van Wonterghem, L J Atherton, E I Moses.   

Abstract

We demonstrate the hohlraum radiation temperature and symmetry required for ignition-scale inertial confinement fusion capsule implosions. Cryogenic gas-filled hohlraums with 2.2 mm-diameter capsules are heated with unprecedented laser energies of 1.2 MJ delivered by 192 ultraviolet laser beams on the National Ignition Facility. Laser backscatter measurements show that these hohlraums absorb 87% to 91% of the incident laser power resulting in peak radiation temperatures of T(RAD)=300 eV and a symmetric implosion to a 100 μm diameter hot core.
© 2011 American Physical Society

Entities:  

Year:  2011        PMID: 21405580     DOI: 10.1103/PhysRevLett.106.085004

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  1 in total

1.  Lead (Pb) hohlraum: target for inertial fusion energy.

Authors:  J S Ross; P Amendt; L J Atherton; M Dunne; S H Glenzer; J D Lindl; D Meeker; E I Moses; A Nikroo; R Wallace
Journal:  Sci Rep       Date:  2013       Impact factor: 4.379

  1 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.