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Physics of Spin in Solids: Materials, Methods and Applications Samed Halilov

Physics of Spin in Solids: Materials, Methods and Applications By Samed Halilov

Physics of Spin in Solids: Materials, Methods and Applications by Samed Halilov


Summary

Proceedings of the NATO Advanced Research Workshop, Baku, Azerbaijan, from 15 to 19 October 2003

Physics of Spin in Solids: Materials, Methods and Applications Summary

Physics of Spin in Solids: Materials, Methods and Applications by Samed Halilov

Most recent publications on spin-related phenomena focus on technological aspects of spin-dependent transport, with emphasis on the specific needs of spintronics. The present publication targets rather fundamental problems related to the physics of spin in solids, such as: (1) manifestation of spin and orbital polarization in spectroscopy, including valence and X-ray photoemission, magneto-optics, low-energy electron scattering on the surface; (2) application of new methods for interpretation and determination of magnetic low-lying excitations in the bulk and on the surface; (3) recent progress in evaluation of different type of magnetic forces including spin-orbit and exchange interaction, with subsequent determination of anisotropy and spin-ordering structure; (4) general problems of spin-dependent transport in semiconductors and metals, such as current-caused torque effect on spins at interfaces and spin injection in quantum dot systems; (5) problems in understanding the spin-dependent trends in unconventional superconductors; (6) many-body problems in solid state physics and recent progress in evaluation of self-energy effects; (7) fabrication of new magnetic materials with pre-programmed properties based on assembly from nano-particles, etc.

Table of Contents

Contributing Authors. Preface. Acknowledgements. Exchange force image of magnetic surfaces; H. Momida, T. Oguchi. FFLO-like state in ferromagnet-superconductor proximity system; B.L. Gyoerffy, M. Krawiec, J.F. Annett. Spin-dependent tunnel currents for metals or superconductors with CDW; A.M. Gabovich, A.I. Voitenko, Mai Suan Li, H. Szymczak, M. Pekala. Spin-dependent transport in phase-separated manganites; K.I. Kugel, A.L. Rakhmanov, A.O. Sboychakov, M.Yu. Kagan, I.V. Brodsky, A.V. Klaptsov. Interplay between helicoidal magnetic ordering and superconductivity; I.N. Askerzade. Electronic structure of strongly correlated materials; S. Biermann, F. Aryasetiawan, A. Georges. Optical and magneto-optical properties of moderately correlated systems; A. Perlov, S. Chadov, H. Ebert, L. Chioncel, A. Lichtenstein, M. Katsnelson. SDW and short-range oscillations in photoemission from films of Cr Metal; S.L. Molodsov. Searching for quantum phase transitions in narrow-band metals; F.M. Grosche, D. Moroni-Klementowicz, R. Burrell, D. Fort, J. Awaka, S. Nagata, H.Q. Yuan, M. Deppe, C. Geibel, G. Sparn, F. Steglich. Hydration and magnetic fluctuations in the superconducting cobaltate; M.D. Johannes, D.J. Singh. Density functional calculations near ferromagnetic quantum critical points; I.I. Mazin, D.J. Singh, A. Aguayo. Spin stability and low-lying excitations in Sr2RuO4; S.V. Halilov, D.J. Singh, A.Y. Perlov. Magnetic anisotropy from electronic structure calculations; L. Nordstroem, T. Burkert, M. Colarieti-Tosti, O. Eriksson. Holstein-Primakoff representation for strongly correlated electron systems; S. Azakov. Tuning the magnetism of strongly correlated electron nanoclusters; N. Kioussis, Yan Luo, C.Verduzzi. New magnetic semiconductors on the base of TIBVI-MeBVI systems; E.M. Kerimova, S.N. Mustafaeva, A.I. Jabbarly, G. Sultanov, A.I. Gasanov, R.N. Kerimov. Localized magnetic polaritons in the magnetic superlattice with impurity; R.T. Tagiyeva.

Additional information

NLS9781402022265
9781402022265
1402022263
Physics of Spin in Solids: Materials, Methods and Applications by Samed Halilov
New
Paperback
Springer-Verlag New York Inc.
2004-08-26
288
N/A
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