Electron Strong Magnetic Field
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Author | : V. R. Khalilov |
Publisher | : CRC Press |
Total Pages | : 336 |
Release | : 1999-02-24 |
Genre | : Technology & Engineering |
ISBN | : 9782884490153 |
In addition to this, the author describes the effect of a superstrong magnetic field on the beta-decay type neutrino emissivity of neutron stars and on the chemical equilibrium of neutron, proton and electron gases in the neutron star core. The book also contains a full discussion of the behaviour of the anomalous magnetic moment in external magnetic fields for the electroweak theory. This important book will prove invaluable to anyone pursuing research in theoretical and high-energy physics, and could also be of interest to astrophysicists.
Author | : Isaak Markovich Khalatnikov |
Publisher | : World Scientific |
Total Pages | : 802 |
Release | : 1996 |
Genre | : Science |
ISBN | : 9789810222536 |
The Landau Institute for Theoretical Physics was created in 1965 by a group of LD Landau's pupils. Very soon, it was widely recognized as one of the world's leading centers in theoretical physics. According to Science Magazine, the Institute in the eighties had the highest citation index among all the scientific organizations in the former Soviet Union. This collection of the best papers of the Institute reflects the development of the many directions in the exact sciences during the last 30 years. The reader can find the original formulations of well-known notions in condensed matter theory, quantum field theory, mathematical physics and astrophysics, which were introduced by members of the Landau Institute.The following are some of the achievements described in this book: monopoles (A Polyakov), instantons (A Belavin et al.), weak crystallization (S Brazovskii), spin superfluidity (I Fomin), finite band potentials (S Novikov) and paraconductivity (A Larkin, L Aslamasov).
Author | : National Research Council |
Publisher | : National Academies Press |
Total Pages | : 233 |
Release | : 2013-12-25 |
Genre | : Science |
ISBN | : 0309286344 |
The Committee to Assess the Current Status and Future Direction of High Magnetic Field Science in the United States was convened by the National Research Council in response to a request by the National Science Foundation. This report answers three questions: (1) What is the current state of high-field magnet science, engineering, and technology in the United States, and are there any conspicuous needs to be addressed? (2) What are the current science drivers and which scientific opportunities and challenges can be anticipated over the next ten years? (3) What are the principal existing and planned high magnetic field facilities outside of the United States, what roles have U.S. high field magnet development efforts played in developing those facilities, and what potentials exist for further international collaboration in this area? A magnetic field is produced by an electrical current in a metal coil. This current exerts an expansive force on the coil, and a magnetic field is "high" if it challenges the strength and current-carrying capacity of the materials that create the field. Although lower magnetic fields can be achieved using commercially available magnets, research in the highest achievable fields has been, and will continue to be, most often performed in large research centers that possess the materials and systems know-how for forefront research. Only a few high field centers exist around the world; in the United States, the principal center is the National High Magnetic Field Laboratory (NHMFL). High Magnetic Field Science and Its Application in the United States considers continued support for a centralized high-field facility such as NHFML to be the highest priority. This report contains a recommendation for the funding and siting of several new high field nuclear magnetic resonance magnets at user facilities in different regions of the United States. Continued advancement in high-magnetic field science requires substantial investments in magnets with enhanced capabilities. High Magnetic Field Science and Its Application in the United States contains recommendations for the further development of all-superconducting, hybrid, and higher field pulsed magnets that meet ambitious but achievable goals.
Author | : Patrik Fazekas |
Publisher | : World Scientific |
Total Pages | : 794 |
Release | : 1999 |
Genre | : Science |
ISBN | : 9810224745 |
Readership: Graduate students and researchers in condensed matter physics.
Author | : Fritz Herlach |
Publisher | : World Scientific |
Total Pages | : 321 |
Release | : 2006 |
Genre | : Science |
ISBN | : 9812774882 |
This three-volume book provides a comprehensive review of experiments in very strong magnetic fields that can only be generated with very special magnets. The first volume is entirely devoted to the technology of laboratory magnets: permanent, superconducting, high-power water-cooled and hybrid; pulsed magnets, both nondestructive and destructive (megagauss fields). Volumes 2 and 3 contain reviews of the different areas of research where strong magnetic fields are an essential research tool. These volumes deal primarily with solid-state physics; other research areas covered are biological systems, chemistry, atomic and molecular physics, nuclear resonance, plasma physics and astrophysics (including QED).
Author | : Noboru Miura |
Publisher | : Oxford University Press |
Total Pages | : 373 |
Release | : 2008 |
Genre | : Science |
ISBN | : 0198517564 |
This book summarizes most of the fundamental physical phenomena which semiconductors and their modulated structures exhibit in high magnetic fields. Readers can learn not only the basic theoretical background but also the present state of the art from the most advanced data in this rapidly growing research area.
Author | : Gottfried Landwehr |
Publisher | : Springer Science & Business Media |
Total Pages | : 699 |
Release | : 2012-12-06 |
Genre | : Technology & Engineering |
ISBN | : 3642844081 |
High magnetic fields have, for a long time, been an important tool in the investigation of the electronic structure of semiconductors. In recent yearsstudies of heterostructures and superlattices have predominated, and this emphasis is reflected in these proceedings. The contributions concentrate on experiments using transport and optical methods, but recent theoretical developments are also covered. Special attention is paid to the quantum Hall effect, including the problem of edge currents, the influence of contacts, and Wigner condensation in the fractional quantum Hall effect regime. The 27 invited contributions by renowned expertsprovide an excellent survey of the field that is complemented by numerous contributed papers.
Author | : Gabriele Giuliani |
Publisher | : Cambridge University Press |
Total Pages | : 808 |
Release | : 2005-03-31 |
Genre | : Science |
ISBN | : 9780521821124 |
Author | : Watanabe Kyoko |
Publisher | : Springer Science & Business Media |
Total Pages | : 330 |
Release | : 2012-12-06 |
Genre | : Science |
ISBN | : 3642563120 |
Presents the most comprehensive review of the influence of highly intense magnetic fields on materials of various classes.
Author | : Daijiro Yoshioka |
Publisher | : Springer Science & Business Media |
Total Pages | : 228 |
Release | : 2002-02-26 |
Genre | : Medical |
ISBN | : 9783540431152 |
The fractional quantum Hall effect has opened up a new paradigm in the study of strongly correlated electrons and it has been shown that new concepts, such as fractional statistics, anyon, chiral Luttinger liquid and composite particles, are realized in two-dimensional electron systems. This book explains the quantum Hall effects together with these new concepts starting from elementary quantum mechanics.