H
Howard A. Scott
Researcher at Lawrence Livermore National Laboratory
Publications - 133
Citations - 3438
Howard A. Scott is an academic researcher from Lawrence Livermore National Laboratory. The author has contributed to research in topics: Laser & National Ignition Facility. The author has an hindex of 25, co-authored 121 publications receiving 2825 citations.
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Journal ArticleDOI
Self-terminating diffraction gates femtosecond X-ray nanocrystallography measurements
Anton Barty,Carl Caleman,Andrew Aquila,Nicusor Timneanu,Lukas Lomb,Thomas A. White,Jakob Andreasson,David Arnlund,Saša Bajt,Thomas R. M. Barends,Miriam Barthelmess,Michael J. Bogan,Christoph Bostedt,John D. Bozek,Ryan Coffee,Nicola Coppola,Jan Davidsson,Daniel P. DePonte,R. Bruce Doak,Tomas Ekeberg,Veit Elser,Sascha W. Epp,Benjamin Erk,Holger Fleckenstein,Lutz Foucar,Petra Fromme,Heinz Graafsma,Lars Gumprecht,Janos Hajdu,Christina Y. Hampton,Robert Hartmann,Andreas Hartmann,Günter Hauser,Helmut Hirsemann,Peter Holl,Mark S. Hunter,Linda C. Johansson,Stephan Kassemeyer,Nils Kimmel,Richard A. Kirian,Mengning Liang,Filipe R. N. C. Maia,Erik Malmerberg,Stefano Marchesini,Andrew V. Martin,Karol Nass,Richard Neutze,Christian Reich,Daniel Rolles,Benedikt Rudek,Artem Rudenko,Howard A. Scott,Ilme Schlichting,Joachim Schulz,M. Marvin Seibert,M. Marvin Seibert,Robert L. Shoeman,Raymond G. Sierra,Heike Soltau,John C. H. Spence,Francesco Stellato,Stephan Stern,Lothar Strüder,Joachim Ullrich,Xiaoyu Wang,Georg Weidenspointner,Uwe Weierstall,Cornelia B. Wunderer,Henry N. Chapman +68 more
TL;DR: Measurements indicate that current X-ray free-electron laser technology should enable structural determination from submicrometre protein crystals with atomic resolution, and the shortest apparent pulse lengths occur at the highest resolution.
Journal ArticleDOI
Burning plasma achieved in inertial fusion
Alex Zylstra,Omar Hurricane,D. A. Callahan,Andrea Kritcher,Joseph Ralph,Harry Robey,J. Steven Ross,Christopher Young,Kevin Baker,D. T. Casey,Tilo Döppner,Laurent Divol,Matthias Hohenberger,S. Le Pape,Art Pak,P. K. Patel,R. Tommasini,S. Ali,Peter Amendt,L. J. Atherton,Benjamin Bachmann,D. S. Bailey,Laura Robin Benedetti,L. F. Berzak Hopkins,Riccardo Betti,Suhas Bhandarkar,Jürgen Biener,R. M. Bionta,N. Birge,E. J. Bond,D. K. Bradley,T. Braun,Tammie Marie Briggs,Matthew W. Bruhn,Peter M. Celliers,B. Chang,Thomas Chapman,H. Chen,C. Choate,A. R. Christopherson,Daniel S. Clark,J. Crippen,E. L. Dewald,T. R. Dittrich,M. J. Edwards,William Farmer,John K. Field,David N. Fittinghoff,Johan Frenje,Jim Gaffney,M. Gatu Johnson,Siegfried Glenzer,G. P. Grim,S. W. Haan,K. D. Hahn,Gareth Hall,B. A. Hammel,J. A. Harte,E. P. Hartouni,John E. Heebner,V.J. Hernandez,Hans J. Herrmann,Mark Herrmann,Denise Hinkel,Dac Duc Ho,J. P. Holder,W. W. Hsing,H. Huang,Kelli Humbird,N. Izumi,Leonard Jarrott,Justin Jeet,O. S. Jones,G.D. Kerbel,Shaun Kerr,J. D. Kilkenny,Y. Kim,H. Geppert Kleinrath,V. Geppert Kleinrath,C. Kong,Joseph Koning,Jeffrey J. Kroll,Matthias Kruse,Bogdan Kustowski,Otto Landen,Steven H. Langer,D. Larson,Nuno Lemos,J. D. Lindl,T. Ma,M. J. MacDonald,B. J. MacGowan,A. J. Mackinnon,Stephan MacLaren,Andrew MacPhee,M. M. Marinak,Dereck. A. Mariscal,E. Marley,Laurent Masse,K. D. Meaney,Nathan Meezan,Pierre Michel,Marius Millot,Jose Milovich,J. D. Moody,Alastair Moore,John W. Morton,T. W. Murphy,Kaitlyn Beverly Newman,J. M. Di Nicola,A. Nikroo,Ryan Nora,Mehali Patel,Lawrence J. Pelz,J. L. Peterson,Yi Ping,Bradley H Pollock,M. Ratledge,Neal Rice,H. G. Rinderknecht,M. D. Rosen,M. S. Rubery,Jay D. Salmonson,J. D. Sater,Sergio Schiaffino,David Schlossberg,Marilyn Schneider,Christopher Schroeder,Howard A. Scott,Scott Sepke,K. L. Sequoia,Mark Sherlock,S Shin,V. A. Smalyuk,Brian Spears,P. T. Springer,Michael Stadermann,Stanislav Stoupin,David Strozzi,L. Suter,C. Thomas,Richard Town,Eleanor Tubman,Petr Volegov,C. R. Weber,Klaus Widmann,C. Wild,Carl Wilde,B. M. Van Wonterghem,D. Tod Woods,Brandon Woodworth,M. Yamaguchi,S. Yang,George B. Zimmerman +153 more
TL;DR: In this paper , the authors achieved a burning-plasma state in the laboratory using a strategy to increase the spatial scale of the capsule through two different implosion concepts and showed that fusion self-heating in excess of the mechanical work injected into the implosions, satisfying several burningplasma metrics.
Journal ArticleDOI
Cretin—a radiative transfer capability for laboratory plasmas
TL;DR: Cretin this paper is a multi-dimensional non-local thermodynamic equilibrium simulation code that self-consistently combines atomic kinetics and radiation transport in a framework suitable for modeling laboratory plasmas.
Journal ArticleDOI
Advances in NLTE modeling for integrated simulations
TL;DR: In this paper, a simple screened-hydrogenic model was proposed to calculate ionization balance with sufficient accuracy, at a low enough computational cost for routine use in radiation-hydrodynamics codes.
Journal ArticleDOI
The role of a detailed configuration accounting (DCA) atomic physics package in explaining the energy balance in ignition-scale hohlraums
M. D. Rosen,Howard A. Scott,D. E. Hinkel,E. A. Williams,Debra Callahan,Richard Town,Laurent Divol,Pierre Michel,William L. Kruer,L. J. Suter,Richard A. London,J. A. Harte,George B. Zimmerman +12 more
TL;DR: The High Flux Model (HFM) as discussed by the authors was used in the National Ignition Campaign (NIC) gas-filled/capsule-imploding hohlraum energetics campaign.