M.R. Douglas
Los Alamos National Laboratory
10 Papers
101 Citations
M.R. Douglas is an academic researcher from Los Alamos National Laboratory. The author has contributed to research in topics: Shock wave & Oblique shock. The author has an hindex of 6, co-authored 10 publications.
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Papers
Fluid dynamics of stellar jets in real time: third epoch hubble space telescope images of hh 1, hh 34, and hh 47
Patrick Hartigan,Adam Frank,John Foster,B. H. Wilde,M.R. Douglas,Paula Rosen,Robert Coker,Brent Blue,J. F. Hansen +8 more
TL;DR: In this paper, the authors presented new, third-epoch Hubble Space Telescope H? and [S II] images of three Herbig-Haro (HH) jets (HH?1&2, HH?34, and HH?47) and compared the new images with those from previous epochs.
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Fluid Dynamics of Stellar Jets in Real Time: Third Epoch HST Images of HH 1, HH 34, and HH 47
Patrick Hartigan,Adam Frank,John Foster,B. H. Wilde,M.R. Douglas,Paula Rosen,Robert Coker,B. E. Blue,J. F. Hansen +8 more
TL;DR: In this paper, the authors presented new, third-epoch HST H-alpha and [S II] images of three HH jets (HH 1 and 2, HH 34, and HH 47) and compared these images with those from the previous epochs.
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Observation of persistent species temperature separation in inertial confinement fusion mixtures.
Brian Haines,R. C. Shah,R. C. Shah,J. M. Smidt,Brian Albright,Tana Cardenas,M.R. Douglas,Chad Forrest,V. Yu. Glebov,Mark Gunderson,Christopher E. Hamilton,Kevin Henderson,Yong Ho Kim,Minseong Lee,Thomas J. Murphy,John A. Oertel,R. E. Olson,Brian M. Patterson,Randall B. Randolph,Derek Schmidt +19 more
TL;DR: Evidence is presented, through simulations and experiments, that contaminants do not fully reach thermal equilibrium, and thus their amount is usually underestimated.
The rate of development of atomic mixing and temperature equilibration in inertial confinement fusion implosions
Brian Haines,R. C. Shah,J. M. Smidt,Brian J. Albright,Tana Cardenas,M.R. Douglas,Chad Forrest,V. Yu. Glebov,Mark Gunderson,Christopher E. Hamilton,Kevin Henderson,Yong Ho Kim,Matthew N. Lee,Thomas J. Murphy,John A. Oertel,R. E. Olson,Brian M. Patterson,Randall B. Randolph,Derek Schmidt +18 more
TL;DR: The MARBLE project as discussed by the authors is a platform for studying the development of atomic mixing and temperature equilibration in inertial confinement fusion implosions and their impact on thermonuclear burn.
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A temperature profile diagnostic for radiation waves on OMEGA-60
Heather Johns,Chris L. Fryer,Suzannah R. Wood,Chris Fontes,Pawel Kozlowski,Nick Lanier,Andy Liao,T. S. Perry,J. W. Morton,C. R. D. Brown,Derek Schmidt,Tana Cardenas,Todd Urbatsch,Peter Hakel,James Colgan,Shane Coffing,J. Cowan,Deanna Capelli,Lynne Goodwin,T. E. Quintana,Christopher E. Hamilton,F. Fierro,C. Wilson,Randall B. Randolph,P. M. Donovan,T. Sedillo,R. P. Gonzales,Manolo Sherrill,M.R. Douglas,Warren Garbett,J.D. Hager,John Kline +31 more
TL;DR: In this paper, the COAX (co-axial) diagnostic platform was developed to provide spatial temperature profiles of a radiation wave through low density foams as a more detailed constraint for simulations.
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