Nonlinear magnetization dynamics in nanosystems /

As data transfer rates increase within the magnetic recording industry, improvements in device performance and reliability crucially depend on the thorough understanding of nonlinear magnetization dynamics at a sub-nanoscale level. This book offers a modern, stimulating approach to the subject of no...

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Bibliographic Details
Main Authors: Bertotti, Giorgio
Corporate Authors: Elsevier Science & Technology
Group Author: Mayergoyz, I. D; Serpico, Claudio
Published: Elsevier,
Publisher Address: Amsterdam ; Boston :
Publication Dates: 2009.
Literature type: eBook
Language: English
Series: Elsevier series in electromagnetism
Subjects:
Online Access: http://www.sciencedirect.com/science/book/9780080443164
Summary: As data transfer rates increase within the magnetic recording industry, improvements in device performance and reliability crucially depend on the thorough understanding of nonlinear magnetization dynamics at a sub-nanoscale level. This book offers a modern, stimulating approach to the subject of nonlinear magnetization dynamics by discussing important aspects such as the Landau-Lifshitz-Gilbert (LLG) equation, analytical solutions, and the connection between the general topological and structural aspects of dynamics. An advanced reference for the study and understanding of nonlinear magneti
Carrier Form: 1 online resource (xi, 466 pages) : illustrations.
Bibliography: Includes bibliographical references (pages 401-445) and index.
ISBN: 9780080913797
0080913792
9780080443164
0080443168
1282120786
9781282120785
Index Number: QC754
CLC: O441.2
Contents: Basic equations for magnetization dynamics -- Spatially uniform magnetization dynamics -- Precessional magnetization dynamics -- Dissipative magnetization dynamics --Magnetization switching -- Magnetization dynamics under time-harmonic excitation -- Spin-waves and parametric instabilities -- Spin-transfer-driven magnetization dynamics -- Stochastic magnetization dynamics -- Numerical techniques for magnetization dynamics analysis.