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Titlebook: Spin Dynamics in Confined Magnetic Structures III; Burkard Hillebrands,André Thiaville Book 2006 Springer-Verlag Berlin Heidelberg 2006 Co

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Spin-Wave Excitations in Finite Rectangular Elements,ole-dominated spin-wave modes near the center of a transversely magnetized long magnetic stripe due to the inhomogeneity of its internal magnetic field, 3. combination of quantization and localization effects for the spin-wave modes in rectangular elements. The observed effects are analyzed using an analytical approach and numerical simulations.
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Book 2006rs will find a comprehensive compilation of the current work in the field. Introductory chapters help newcomers to understand the basic concepts. The more advanced chapters give the current state-of-the-art of spin dynamic issues ranging from the femtosecond to the microsecond regime. This volume co
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Precessional Switching of Thin Nanomagnets with Uniaxial Anisotropy,led “all-electrical” experimental investigations of precessional switching on soft uniaxial micrometer-sized thin magnets, and we discuss them using a comprehensive, mostly analytical framework. General criteria are derived for the analytical assessment of the switching ability of any arbitrary set
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Spin-Wave Excitations in Finite Rectangular Elements, given. Several effects caused by the lateral confinement in the stripes are reviewed: 1. lateral quantization of dipole-dominated Damon–Eshbach spin-wave modes in a longitudinally magnetized stripe due to its finite width, 2. localization of exchange-dominated spin-wave modes near the edges and dip
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Ferromagnetic Resonance Force Microscopy,ic resonance imaging (MRI) with the high sensitivity and resolution of atomic force microscopy (AFM). In the nuclear magnetic resonance (NMR) mode or the electron spin resonance (ESR) mode it will enable nondestructive, chemical-specific, high-resolution microscopic studies and imaging of subsurface
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Domain-Wall Dynamics in Nanowiresand Nanostrips,all structures govern the dynamics of the walls under an applied field, so that rather different wall velocities can result from small changes in the sample transverse dimensions. These phenomena are first presented and discussed using results of micromagnetic simulations. In order to understand the
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Spin-Transfer Torque and Dynamics,precession of the magnetization in thin magnetic layers. The flow of spins is determined by the spin-dependent transport properties, like conductivity, interface resistance, and spin-flip scattering in the magnetic multilayer. When an electron spin carried by the current interacts with a magnetic la
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