Trends in magnetism
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The purpose of this special collection of peer-reviewed papers was to provide an opportunity for scientists from all over the world to share details of recent advances in the physics of magnetic materials. The work is divided into: I. To the Memory of S.V.Vonsovsky, II. Spin-Polarized Transport, III. Spin Dynamics, Spin Waves, Spin-Wave Resonance, IV. Spin Reorientation Phase Transitions, V. Spin-Orbit and Exchange Interactions, Magnetic Anisotropy and Magnetostriction, VI. Dynamics of Domain Structures and Domain Walls, VII. Magnetic Nanostructures and Films, VIII. Magnetism and Nanomaterials
Title |
Trends in magnetism : selected, peer reviewed papers from the IV Euro-Asian Symposium "Trends in MAGnetism" : nanospintronics, EASTMAG-2010, June 28-July 2, 2010, Ekaterinburg, Russia / edited by V. Ustinov. |
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Additional Titles |
EASTMAG 2010 Nanospintronics |
Publisher |
Stafa-Zurich, Switzerland : Trans Tech Publications |
Creation Date |
[2011] |
Notes |
Description based upon print version of record. Includes bibliographical references and index. English |
Content |
Trends in Magnetism Preface Committees Table of Contents I. To the Memory of S.V. Vonsovsky Ideas by S.V. Vonsovsky and Modern Model Treatment of Magnetism II. Spin Polarized Transport Spin Polarized Current in Magnetic Nanojunctions Giant Magnetoresistance in Magnetic Nanostructures and Spintronic Devices Skew Scattering Mechanism by an Ab Initio Approach: Extrinsic Spin Hall Effect in Noble Metals Manganese-Doped CdGeAs2, ZnGeAs2 and ZnSiAs2 Chalcopyrites: A New Advanced Materials for Spintronics On Nature of Resonant Transversal Kerr Effect in InMnAs and GaMnAs Layers Variation of Electroresistive Properties of Nanocrystalline Nd0.7Sr0.3MnO3 by Thermobaric Treatment under a Pressure of 9 GPaQuantum Amplifier with Spin-Polarized Electrons Injection Spin Relaxation in GaAs Doped with Magnetic (Mn) Atoms Fabrication and Study of Spin Light-Emitting Nanoheterostructures on the Basis of III-V Semiconductors III. Spin Dynamics, Spin Waves, Spin-Wave Resonance Nonlinear Spin Dynamics in Magnetic Mesostructures Induced by Spin Polarized Autoemission Collective Magnetic Moment Relaxation in an Assembly of Ferromagnetic Nanoparticles Ferromagnetic and Spin-Wave Resonance in Exchange-Coupled NiFe/Ag/NiFe Three-Layer StructuresSpin-Wave Resonance in Multilayer Films Autoresonance Excitation of Nonlinear Oscillations of Magnetization and Domain Walls in Ferromagnets Autoresonance Parametric Excitation of the Magnetic Breather in a Uniaxial Ferromagnet Spectral Properties of Superlattices with Anisotropic Inhomogeneities. The Transition from 3D to 1D Disorder Influence of Mechanical Pressure and External Field on Dynamic Interactions in Segnetomagnetics Ferromagnetic and Spin-Wave Resonance in FexNi1-X (0 Combined Effects of 2D and 3D Inhomogeneities on the Dynamic Susceptibility of SuperlatticesMagnetoelastic Resonance in Zero-Mean Magnetostrictive Media Stochastic Dynamics of Magnetic Nanoparticles at Finite Temperatures FMR in Ferromagnet with Electron Spin-Orbital Clusters Exchange-Induced Magnetic Dipole Mechanism of Magnon Sideband IV. Spin Reorientation Phase Transitions The Magnetic Phase Transitions and Magnetocaloric Effect in the Ho(Co1-XAlx)2 and Tb(Co1-XAlx)2 Compounds Temperature Behaviour of Magnetic Domain Structure in RE-3d Intermetallics with Spin-Reorientation TransitionsSpin Reorientation Transition in Nanocrystalline (Pr,Sm)Fe8Ga3C Alloys Simulating Processes of Magnetic Phase Nucleation in Defect-Containing Magnets of Finite Thickness Magnetocaloric Effect of RCo5 Single Crystals in the Region of Spin-Reorientation Transitions Spin-Reorientation Transition in Rare-Earth Intermetallics V. Spin-Orbit and Exchange Interactions, Magnetic Anisotropy and Magnetostriction The Induced Anisotropy and its Influence on Absorption of the NMR and Domain Structure of Со-Р Amorphous Films |
Series |
Solid state phenomena, 1012-0394 volumes 168-169 |
Extent |
1 online resource (575 p.) |
Language |
English |
Copyright Date |
©2011 |
National Library system number |
997010712841205171 |
MARC RECORDS
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