Magnetic Reconnection: Concepts and Applications: Astrophysics and Space Science Library, cartea 427
Editat de Walter Gonzalez, Eugene Parkeren Limba Engleză Hardback – 2 mar 2016
Opening with an introductory discussion of some fundamental issues related to magnetic reconnection, subsequent chapters address topics including collisionless magnetic reconnection, MHD structures in 3D reconnection, energy conversion processes, fast reconnection mediated by plasmoids, rapid reconnection and magnetic field topology. Further chapters consider specific areas of application such as magnetospheric dayside and tail reconnection, comparative reconnection in planetary systems and reconnection in astrophysical systems. The book offers insight into discussions about fundamental concepts and key aspects of MR, access to the full set of applications of MR as presently known in space physics and in astrophysics, and an introduction to a new related area of study dealing with the annihilation of quantum magnetic fluxes and its implications in the study on neutron star activity.
The book is aimed primarily at students entering the field, but will also serve as a useful reference text for established scientists and senior researchers.
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Specificații
ISBN-13: 9783319264301
ISBN-10: 3319264303
Pagini: 400
Ilustrații: XII, 542 p. 201 illus., 128 illus. in color.
Dimensiuni: 155 x 235 x 30 mm
Greutate: 0.95 kg
Ediția:1st ed. 2016
Editura: Springer International Publishing
Colecția Springer
Seria Astrophysics and Space Science Library
Locul publicării:Cham, Switzerland
ISBN-10: 3319264303
Pagini: 400
Ilustrații: XII, 542 p. 201 illus., 128 illus. in color.
Dimensiuni: 155 x 235 x 30 mm
Greutate: 0.95 kg
Ediția:1st ed. 2016
Editura: Springer International Publishing
Colecția Springer
Seria Astrophysics and Space Science Library
Locul publicării:Cham, Switzerland
Public țintă
ResearchCuprins
1 Fundamental concepts associated with Magnetic Reconnection; W.D.Gonzalez, et al.- 2 Collisionless Reconnection and Electron Demagnetization; J. Scudder, et al.- 3 MHD structures in 3D Reconnection; E. Priest.- 4 Energy Conversion during Reconnection; M. Yamada, et al.- 5 Rapid Reconnection and Magnetic Field Topology; E. N. Parker, A. F. Rappazzo.- 6 Magnetospheric Dayside Reconnection; P. Cassak, S. Fuselier.- 7 Magnetospheric Tail Reconnection; A. Petrukovich, et al.- 8 Magnetospheric Separatrices: Theory and Observations; G. Lapenta, et al.- 9 Comparative Reconnection in Planetary Systems; R. J. Walker, X. Jia.- 10 Fractal Reconnection in Solar and Stellar Environments; K. Shibata, S.Takasao.- 11 Turbulent Reconnection in Astrophysical Systems; A. Lazarian, et al.- 12 Radiative Reconnection in Astrophysics; D. Uzdensky.- 13 Annihilation of Quantum Magnetic Fluxes; W. D. Gonzalez.
Notă biografică
WalterGonzalez received his PhD in Physics from theUniversity of California-Berkeley in 1973 and has worked at Stanford university,Caltech- JPL/NASA, Michigan university and atseveral other universities abroad, alternating with his research position in Brazil.He is head of the Heliospheric and Magnetospheric Division of the NationalInstitute for Space Research of Brazil, INPE . Together with Prof F S Mozerfrom UC Berkeley Prof Gonzalez published in 1974 the first quantitative modelfor Magnetic Reconnection at the Earth’s magnetopause, thus introducing theconcepts of "component reconnection", "tilted reconnectionline", "reconnection potential" and "power transfer fromthe solar wind to the Earth’s magnetosphere due to reconnection". He alsopublished in 1994 the paper "What is a Geomagnetic Storm?", which hasbeen extensively cited. He is author of more than 200 articles, 15 book chaptersand 4 books in space plasma physics. He is the first president-elect of theLatin-American Space Geophysics association, a Distinguished Visiting scientistof NASA and is Member of the Brazilian and Peruvian Academy of Sciences.
EugeneParker received hisB.S. degree in physics from Michigan State University in 1948 and Ph.D. fromCaltech in 1951. Inthe mid-1950s he developed the theory on the supersonic solar wind andpredicted the Parker-spiral shape of the solar/interplanetary magnetic field inthe outer solar system. Professor Parker was elected to the National Academy ofSciences in 1967. He has been at the University of Chicago since 1955,where he has held positions in the physics department, the astronomy andastrophysics department and the Enrico Fermi Institute. He is a leadingauthority on the solar wind, solar dynamo, space plasmas and cosmic magneticfields. He is author of many articles and several books on cosmic and spaceplasmas and is still engaged in active research at the University of Chicago.
EugeneParker received hisB.S. degree in physics from Michigan State University in 1948 and Ph.D. fromCaltech in 1951. Inthe mid-1950s he developed the theory on the supersonic solar wind andpredicted the Parker-spiral shape of the solar/interplanetary magnetic field inthe outer solar system. Professor Parker was elected to the National Academy ofSciences in 1967. He has been at the University of Chicago since 1955,where he has held positions in the physics department, the astronomy andastrophysics department and the Enrico Fermi Institute. He is a leadingauthority on the solar wind, solar dynamo, space plasmas and cosmic magneticfields. He is author of many articles and several books on cosmic and spaceplasmas and is still engaged in active research at the University of Chicago.
Textul de pe ultima copertă
This book provides an overview of recent research highlights in the main areas of application of magnetic reconnection (MR), including planetary, solar and magnetospheric physics and astrophysics. It describes how research on magnetic reconnection, especially concerning the Earth's magnetosphere, has grown extensively due to dedicated observations from major satellite missions such as Cluster, Double Star and Themis. The accumulated observations from these missions are being supplemented by many theoretical and modelling efforts, for which large scale computer facilities are successfully being used, and the theoretical advances are also covered in detail.
Opening with an introductory discussion of some fundamental issues related to magnetic reconnection, subsequent chapters address topics including collisionless magnetic reconnection, MHD structures in 3D reconnection, energy conversion processes, fast reconnection mediated by plasmoids, rapid reconnection and magnetic field topology. Further chapters consider specific areas of application such as magnetospheric dayside and tail reconnection, comparative reconnection in planetary systems and reconnection in astrophysical systems. The book offers insight into discussions about fundamental concepts and key aspects of MR, access to the full set of applications of MR as presently known in space physics and in astrophysics, and an introduction to a new related area of study dealing with the annihilation of quantum magnetic fluxes and its implications in the study on neutron star activity.
The book is aimed primarily at students entering the field, but will also serve as a useful reference text for established scientists and senior researchers.
Opening with an introductory discussion of some fundamental issues related to magnetic reconnection, subsequent chapters address topics including collisionless magnetic reconnection, MHD structures in 3D reconnection, energy conversion processes, fast reconnection mediated by plasmoids, rapid reconnection and magnetic field topology. Further chapters consider specific areas of application such as magnetospheric dayside and tail reconnection, comparative reconnection in planetary systems and reconnection in astrophysical systems. The book offers insight into discussions about fundamental concepts and key aspects of MR, access to the full set of applications of MR as presently known in space physics and in astrophysics, and an introduction to a new related area of study dealing with the annihilation of quantum magnetic fluxes and its implications in the study on neutron star activity.
The book is aimed primarily at students entering the field, but will also serve as a useful reference text for established scientists and senior researchers.
Caracteristici
Presents a review of recent research highlights in magnetic reconnection as applied to planetary physics and space science Describes observational results from major satellite missions and complementary theoretical and modelling efforts Includes a solid foundation chapter introducing fundamental concepts associated with magnetic reconnection Includes supplementary material: sn.pub/extras