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Journal ArticleDOI

Onset of linear instability driven by electric currents in magnetic systems: a Lagrangian approach

Giancarlo Consolo
- 18 Mar 2016 - 
- Vol. 65, Iss: 2, pp 413-422
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TLDR
In this article, a Lagrangian formalism is used to compute the onset of linear instability in magnetic heterostructures subject to two competing dissipative phenomena: the intrinsic damping and the current-induced spin-transfer-torque.
Abstract
A Lagrangian formalism is used to compute the onset of linear instability in magnetic heterostructures subject to two competing dissipative phenomena: the intrinsic damping and the current-induced spin-transfer-torque. The small-amplitude precessional dynamics undergone by the magnetization vector at the excitation threshold is described in terms of linearized Lagrange equations which are recast as a complex generalized non-Hermitian eigenvalue problem. The numerical solution of such a problem allows to characterize those magnetic normal modes which become unstable when the “negative” losses induced by the electric current fully compensate the intrinsic “positive” ones. An illustrative example is also carried out in order to test the capability of the proposed method to determine accurately such an instability threshold when geometric or material properties are varied.

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Journal ArticleDOI

Tensor representation of magnetostriction for all crystal classes

TL;DR: A systematic representation of the fourth-order magnetostriction tensor for all crystal classes is presented, based on the formalism proposed by Walpole, which allows the stress-free magnetostrictive strain tensor as well as the scalar strain in a given direction to be calculated.
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Modeling magnetic domain-wall evolution in trilayers with structural inversion asymmetry

TL;DR: In this paper, the one-dimensional motion of magnetic domain walls in a thin ferromagnetic nanostrip sandwiched between a heavy metal and a metal oxide is investigated analytically in the framework of the extended Landau-Lifshitz-Gilbert equation.
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Strain-mediated propagation of magnetic domain-walls in cubic magnetostrictive materials

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Dissertation

Rotational & Translational Electrical Trapping of Superellipsoidal Particle in Nonuniform Field

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References
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Book

Classical Mechanics

Journal ArticleDOI

Current-driven excitation of magnetic multilayers

TL;DR: In this paper, a new mechanism was proposed for exciting the magnetic state of a ferromagnet, where a transfer of vectorial spin accompanied an electric current flowing perpendicular to two parallel magnetic films connected by a normal metallic spacer.
Journal ArticleDOI

Magnetic Domain-Wall Racetrack Memory

TL;DR: The racetrack memory described in this review comprises an array of magnetic nanowires arranged horizontally or vertically on a silicon chip and is an example of the move toward innately three-dimensional microelectronic devices.
Book

The physical principles of magnetism

TL;DR: In this paper, the authors present a review of the properties of the magnetic field and its properties in terms of properties such as: 1. The magnetic field, the magnetization vector, the Langevin Formula for Diamagnetic Susceptibility, and the magnetic shell.
Journal ArticleDOI

Nonlinear Auto-Oscillator Theory of Microwave Generation by Spin-Polarized Current

TL;DR: In this paper, a general analytic approach to the theory of microwave generation in magnetic nano-structures driven by spin-polarized current was proposed. But the proposed approach is based on the universal model of an auto-oscillator with negative damping and nonlinear frequency shift.
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