Ab Initio Studies on the Transport Properties of High Energy Density (HED) Plasmas

Ab Initio Studies on the Transport Properties of High Energy Density (HED) Plasmas

Author: Yanhao Ding

Publisher:

Published: 2020

Total Pages: 108

ISBN-13:

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"Warm Dense Matter (WDM) or High Energy Density (HED) plasmas are encountered in many fields of science ranging from planetary science and astrophysics to inertial confinement fusion (ICF). In ICF implosions, the deuterium-tritium fuel and ablator materials undergo various extreme state of matter. Accurately knowing of the properties of material under such conditions is essential to both understand the implosion physics and to design the ICF targets. Quantum molecular-dynamics (QMD), based on Density Functional Theory (DFT), has been successfully applied to investigate the equation of state, thermal and electrical conductivities and optical absorptions of warm dense plasma. However, these QMD studies based on Kohn-Sham DFT cannot access to the HED plasmas with relatively high temperature and low densities. In this Ph. D. project, a time-dependent orbital-free density functional theory (TD-OF-DFT) simulation package has been developed for ab initio investigations of charged-particle stopping power of warm dense matter . Our current dependent TD- OF-DFT calculations have reproduced the recently well-characterized stopping power experiment in warm dense beryllium. For?-particle stopping in warm and solid-density DT plasmas, the ab initio TD-OF-DFT simulations show a lower stopping power up to 25 % in comparison with three stopping-power models often used in the high energy- density physics community"--Pages x-xi


Transport and Optical Properties of Nonideal Plasma

Transport and Optical Properties of Nonideal Plasma

Author: I.T. Iakubov

Publisher: Springer Science & Business Media

Published: 2013-06-29

Total Pages: 326

ISBN-13: 1489910662

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The book is devoted to the physical properties of nonideal plasma, in which the effects of interparticle interactions are substantial. Such a plasma is usually compressed so strongly that it is called dense plasma. Interest in plasma studies has increased over the last 10 or 15 years, owing to the development of modern technology and sophisticated facilities whose oper ation is based on a high energy density. As a result of a recent sharp increase in the number of experimental and theoretical investigations, much interesting and reliable data on the properties of dense plasma have been obtained. The data are distributed in a rapidly growing number of original publications and reviews. This volume is a systematic treatment of the thermodynamics (ionization equilibrium, particle composition), charge transport properties (especially electric con ductivity), optical properties (peculiarities of continuous and discrete spectra), and collective modes (features and manifestations) of nonideal plasma. Theoretical models are considered along with the experimental data. The book is intended for the wide range of readers, including specialists in plasma physics and various researchers who need knowledge in this field.


Transport Properties of Dense Plasmas

Transport Properties of Dense Plasmas

Author: W. Ebeling et al.

Publisher: Walter de Gruyter GmbH & Co KG

Published: 1983-12-31

Total Pages: 192

ISBN-13: 3112707214

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No detailed description available for "Transport Properties of Dense Plasmas".


Frontiers in High Energy Density Physics

Frontiers in High Energy Density Physics

Author: National Research Council

Publisher: National Academies Press

Published: 2003-04-11

Total Pages: 176

ISBN-13: 030916883X

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Recent scientific and technical advances have made it possible to create matter in the laboratory under conditions relevant to astrophysical systems such as supernovae and black holes. These advances will also benefit inertial confinement fusion research and the nation's nuclear weapon's program. The report describes the major research facilities on which such high energy density conditions can be achieved and lists a number of key scientific questions about high energy density physics that can be addressed by this research. Several recommendations are presented that would facilitate the development of a comprehensive strategy for realizing these research opportunities.


High Energy Density Physics and Exotic Acceleration Schemes

High Energy Density Physics and Exotic Acceleration Schemes

Author: E. Colby

Publisher:

Published: 2005

Total Pages:

ISBN-13:

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The High Energy Density and Exotic Acceleration working group took as our goal to reach beyond the community of plasma accelerator research with its applications to high energy physics, to promote exchange with other disciplines which are challenged by related and demanding beam physics issues. The scope of the group was to cover particle acceleration and beam transport that, unlike other groups at AAC, are not mediated by plasmas or by electromagnetic structures. At this Workshop, we saw an impressive advancement from years past in the area of Vacuum Acceleration, for example with the LEAP experiment at Stanford. And we saw an influx of exciting new beam physics topics involving particle propagation inside of solid-density plasmas or at extremely high charge density, particularly in the areas of laser acceleration of ions, and extreme beams for fusion energy research, including Heavy-ion Inertial Fusion beam physics. One example of the importance and extreme nature of beam physics in HED research is the requirement in the Fast Ignitor scheme of inertial fusion to heat a compressed DT fusion pellet to keV temperatures by injection of laser-driven electron or ion beams of giga-Amp current. Even in modest experiments presently being performed on the laser-acceleration of ions from solids, mega-amp currents of MeV electrons must be transported through solid foils, requiring almost complete return current neutralization, and giving rise to a wide variety of beam-plasma instabilities. As keynote talks our group promoted Ion Acceleration (plenary talk by A. MacKinnon), which historically has grown out of inertial fusion research, and HIF Accelerator Research (invited talk by A. Friedman), which will require impressive advancements in space-charge-limited ion beam physics and in understanding the generation and transport of neutralized ion beams. A unifying aspect of High Energy Density applications was the physics of particle beams inside of solids, which is proving to be a very important field for diverse applications such as muon cooling, fusion energy research, and ultra-bright particle and radiation generation with high intensity lasers. We had several talks on these and other subjects, and many joint sessions with the Computational group, the EM Structures group, and the Beam Generation group. We summarize our groups' work in the following categories: vacuum acceleration schemes; ion acceleration; particle transport in solids; and applications to high energy density phenomena.


Frontiers in High Energy Density Physics

Frontiers in High Energy Density Physics

Author: National Research Council

Publisher: National Academies Press

Published: 2003-05-11

Total Pages: 177

ISBN-13: 030908637X

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Recent scientific and technical advances have made it possible to create matter in the laboratory under conditions relevant to astrophysical systems such as supernovae and black holes. These advances will also benefit inertial confinement fusion research and the nation's nuclear weapon's program. The report describes the major research facilities on which such high energy density conditions can be achieved and lists a number of key scientific questions about high energy density physics that can be addressed by this research. Several recommendations are presented that would facilitate the development of a comprehensive strategy for realizing these research opportunities.


Plasma Science

Plasma Science

Author: National Academies of Sciences Engineering and Medicine

Publisher:

Published: 2021-02-28

Total Pages: 291

ISBN-13: 9780309677608

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Plasma Science and Engineering transforms fundamental scientific research into powerful societal applications, from materials processing and healthcare to forecasting space weather. Plasma Science: Enabling Technology, Sustainability, Security and Exploration discusses the importance of plasma research, identifies important grand challenges for the next decade, and makes recommendations on funding and workforce. This publication will help federal agencies, policymakers, and academic leadership understand the importance of plasma research and make informed decisions about plasma science funding, workforce, and research directions.


Plasma Science

Plasma Science

Author: National Research Council

Publisher: National Academies Press

Published: 2008-01-20

Total Pages: 281

ISBN-13: 0309109434

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As part of its current physics decadal survey, Physics 2010, the NRC was asked by the DOE, NSF, and NASA to carry out an assessment of and outlook for the broad field of plasma science and engineering over the next several years. The study was to focus on progress in plasma research, identify the most compelling new scientific opportunities, evaluate prospects for broader application of plasmas, and offer guidance to realize these opportunities. The study paid particular attention to these last two points. This "demand-side" perspective provided a clear look at what plasma research can do to help achieve national goals of fusion energy, economic competitiveness, and nuclear weapons stockpile stewardship. The report provides an examination of the broad themes that frame plasma research: low-temperature plasma science and engineering; plasma physics at high energy density; plasma science of magnetic fusion; space and astrophysical science; and basic plasma science. Within those themes, the report offers a bold vision for future developments in plasma science.


Impactful Times

Impactful Times

Author: James R. Asay

Publisher: Springer

Published: 2017-05-02

Total Pages: 676

ISBN-13: 331933347X

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This book presents a history of shock compression science, including development of experimental, material modeling, and hydrodynamics code technologies over the past six decades at Sandia National Laboratories. The book is organized into a discussion of major accomplishments by decade with over 900 references, followed by a unique collection of 45 personal recollections detailing the trials, tribulations, and successes of building a world-class organization in the field. It explains some of the challenges researchers faced and the gratification they experienced when a discovery was made. Several visionary researchers made pioneering advances that integrated these three technologies into a cohesive capability to solve complex scientific and engineering problems. What approaches worked, which ones did not, and the applications of the research are described. Notable applications include the turret explosion aboard the USS Iowa and the Shoemaker-Levy comet impact on Jupiter. The personal anecdotes and recollections make for a fascinating account of building a world-renowned capability from meager beginnings. This book will be inspiring to the expert, the non expert, and the early-career scientist. Undergraduate and graduate students in science and engineering who are contemplating different fields of study should find it especially compelling.