Zobrazeno 1 - 10
of 538
pro vyhledávání: '"R E, OLSON"'
Autor:
Brian M. Haines, R. C. Shah, J. M. Smidt, B. J. Albright, T. Cardenas, M. R. Douglas, C. Forrest, V. Yu Glebov, M. A. Gunderson, C. E. Hamilton, K. C. Henderson, Y. Kim, M. N. Lee, T. J. Murphy, J. A. Oertel, R. E. Olson, B. M. Patterson, R. B. Randolph, D. W. Schmidt
Publikováno v:
Nature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
The influence of contaminants is one of the factors hindering self-sustained thermonuclear burn in inertial confinement fusion. Here, the authors present evidence, through simulations and experiments, that contaminants do not fully reach thermal equi
Externí odkaz:
https://doaj.org/article/765c113ea35346f7a3d73f98917c0f53
Autor:
Randall B. Randolph, Christopher E. Hamilton, V. Yu. Glebov, Mark Gunderson, Tana Cardenas, J. M. Smidt, Brian M. Patterson, R. E. Olson, Brian Haines, John A. Oertel, Chad Forrest, R. C. Shah, Yong Ho Kim, Derek Schmidt, Minseong Lee, M.R. Douglas, Thomas J. Murphy, Brian Albright, Kevin Henderson
Publikováno v:
Nature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
Nature Communications
Nature Communications
The injection and mixing of contaminant mass into the fuel in inertial confinement fusion (ICF) implosions is a primary factor preventing ignition. ICF experiments have recently achieved an alpha-heating regime, in which fusion self-heating is the do
Autor:
P. A. Bradley, B. M. Haines, G. A. Kyrala, S. A. MacLaren, J. D. Salmonson, J. E. Pino, K. K. Mackay, R. R. Peterson, A. Yi, L. Yin, R. E. Olson, N. Krasheninnikova, S. H. Batha, J. L. Kline, J. P. Sauppe, S. M. Finnegan, A. Pak, T. Ma, T. R. Dittrich, E. L. Dewald, S. F. Khan, D. Sayre, R. Tommasini, J. E. Ralph, J. E. Field, L. Masse, R. E. Tipton, A. J. Mackinnon, L. R. Benedetti, S. R. Nagel, D. K. Bradley, P. M. Celliers, L. Berzak Hopkins, N. Izumi, P. Kervin, C. Yeamans, R. Hatarik, E. P. Hartouni, D. P. Turnbull, K. C. Chen, D. E. Hoover
Publikováno v:
Physics of Plasmas. 29:102702
An investigation of twenty two-shock campaign indirectly driven capsules on the National Ignition Facility was conducted using the xRAGE computer code. The two-shock platform was developed to look at the sensitivity of fuel–ablator mix with shock t
Autor:
K. Ullmann, J. Ullrich, M. H. Prior, Lutz Spielberger, S. Voss, V. Frohne, T. Jahnke, R. Moshammer, Rami Ali, Alexander Dorn, V. Mergel, Markus Schöffler, S. Schößler, L. Schmidt, Allen Landers, Achim Czasch, Michael Schulz, R E Olson, Daniel Fischer, Horst Schmidt-Böcking, Reinhard Dörner, Sebastian Eckart, C. L. Cocke, Thorsten Weber, Ottmar Jagutzki
Publikováno v:
Molecular Beams in Physics and Chemistry ISBN: 9783030639624
Multi-particle momentum imaging experiments are now capable of providing detailed information on the properties and the dynamics of quantum systems in Atomic, Molecular and Photon (AMO) physics. Historically, Otto Stern can be considered the pioneer
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::fc251372e939984a3e565ea23e1f8d10
https://doi.org/10.1007/978-3-030-63963-1_18
https://doi.org/10.1007/978-3-030-63963-1_18
Autor:
P. Allan, R. J. Leeper, Peter Norreys, Paul A. Bradley, S. A. Yi, J. Luis, Ramy Aboushelbaya, James Sadler, Robert R. Peterson, Kirk Flippo, Kevin Glize, M. G. Ramsay, Robert Bingham, Luke Ceurvorst, B. Spiers, Raoul Trines, N. Sircombe, Naren Ratan, Brian Haines, R. H. W. Wang, J. Fyrth, L. Hobbs, M. W. Mayr, C. R. D. Brown, E. Floyd, R. E. Olson, Steven James, John Kline, Jonathan Skidmore, Alex Zylstra, M. P. Hill, R. W. Paddock, A. F. Savin
Publikováno v:
Philosophical transactions. Series A, Mathematical, physical, and engineering sciences
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences
A European consortium of 15 laboratories across nine nations have worked together under the EUROFusion Enabling Research grants for the past decade with three principle objectives. These are: (a) investigating obstacles to ignition on megaJoule-class
Autor:
B. J. Albright, T. J. Murphy, B. M. Haines, M. R. Douglas, J. H. Cooley, T. H. Day, N. A. Denissen, C. Di Stefano, P. Donovan, S. L. Edwards, J. Fincke, L. M. Green, L. Goodwin, R. A. Gore, M. A. Gunderson, J. R. Haack, C. E. Hamilton, E. P. Hartouni, N. V. Kabadi, S. Khan, P. M. Kozlowski, Y. Kim, M. N. Lee, R. Lester, T. Morrow, J. A. Oertel, R. E. Olson, B. M. Patterson, T. Quintana, R. B. Randolph, D. W. Schmidt, R. C. Shah, J. M. Smidt, A. Strickland, C. Wilson, L. Yin
Publikováno v:
Physics of Plasmas. 29:022702
Autor:
Derek Schmidt, Brent Blue, Charles Yeamans, R. E. Olson, A. Haid, Gregory Kemp, Mark J. Schmitt, Brian Haines, Michael Farrell, R. J. Leeper, Harry Robey, Paul A. Bradley
Publikováno v:
Physics of Plasmas. 28:122704
We propose a new approach to inertial confinement fusion (ICF) that could potentially lead to ignition and propagating thermonuclear burn at the National Ignition Facility (NIF). The proposal is based upon a combination of two concepts, referred to a
Publikováno v:
Physics in medicine and biology. 64(20)
Collisional ionization processes involving H
Autor:
Mark Gunderson, J. M. Smidt, John A. Oertel, Tana Cardenas, Minseong Lee, Brian Albright, R. E. Olson, Yong Ho Kim, Christopher E. Hamilton, Pawel Kozlowski, Lin Yin, Nicholas Denissen, Robert Gore, Brian Haines, M.R. Douglas, E. P. Hartouni, James Cooley, R. C. Shah, T. H. Day, Thomas J. Murphy, Douglas Woods, Randall B. Randolph, Jeffrey R. Haack
Publikováno v:
High Energy Density Physics. 38:100929
The Marble campaign on the National Ignition Facility investigates the effect of heterogeneous mix on thermonuclear burn for comparison to a probability distribution function (PDF) burn model. Marble utilizes plastic capsules filled with deuterated p
Autor:
Pawel Kozlowski, J. Velechovsky, Yong Ho Kim, Samuel Jones, Brian Haines, Tana Cardenas, J. M. Smidt, R. E. Olson, L. M. Green, T. H. Day, Douglas Woods, Thomas J. Murphy, M.R. Douglas, Brian J. Albright, Robert Gore
Publikováno v:
Physics of Plasmas. 28:012702
The engineered macro-pore foam provides a new way to study thermonuclear burn physics by utilizing capsules containing deuterated (D) foam and filling tritium (T) gas in the engineered macro-pores. The implosion of a thermonuclear capsule filled with