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Nonlinear and Chaotic Magnetization Dynamics in Single-domain Nanoparticles and Exchange-coupled Thin-films

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Release : 2018
Genre : Dynamics
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Book Synopsis Nonlinear and Chaotic Magnetization Dynamics in Single-domain Nanoparticles and Exchange-coupled Thin-films by : Aaron Michael Ferona

Download or read book Nonlinear and Chaotic Magnetization Dynamics in Single-domain Nanoparticles and Exchange-coupled Thin-films written by Aaron Michael Ferona. This book was released on 2018. Available in PDF, EPUB and Kindle. Book excerpt: In this dissertation, we study two fundamental issues in nonlinear magnetism: the nonlinear dynamics of nanoparticles and the nonlinear dynamics of exchange-coupled thin-films. The behavior of a uniformly magnetized domain of ellipsoidal shape subject to a static external field and oscillatory external driving field is analyzed near bifurcation events. The analysis includes the effects of both linear and circularly polarized driving fields and is performed using numerical simulations of the Landau-Lifshitz-Gilbert (LLG) equation. Under a linearly polarized driving field, the LLG equation is a nonautonomous differential equation which can lead to complex magnetization motions, such as bistability, multi-periodic orbits, quasiperiodicity and chaos. Under a circular polarized driving field, the LLG equation can be written in autonomous form by transforming to the frame rotating with the driving field. The autonomous nature allows one to perform a fixed point analysis of the system for select demagnetization factors. Similarities and differences between the driven systems are highlighted through, bifurcation diagrams, phase portraits, basins of attraction and Lyapunov exponents. Magnetization switching, prolonged transients, quasiperiodicity, and chaos are observed with both linear and circularly polarized driving fields in the magnetic systems investigated. We also investigate the dynamics of exchange-coupled ferromagnetic films in the nonlinear limit and find a number of interesting features. These include the following: 1) A power-dependent localization of the magnetization oscillations; 2) A nonlinear mixing of the acoustic and optic modes in the antiferromagnetically coupled system leads to quasiperiodic and multi-periodic composite modes; 3) Ferromagnetic resonance experiments will show new absorption peaks (in the 20-50 GHz range) which have a rapid increase in strength with input power. As with the case of the uniformly magnetized domain, the results are calculated through linearization techniques and numerical solutions of the LLG equation. The nonlinear (and linear) behavior is illustrated through Poincare section bifurcation diagrams and power absorption curves.

Handbook of Nanomagnetism

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Release : 2015-10-06
Genre : Science
Kind : eBook
Book Rating : 053/5 ( reviews)

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Book Synopsis Handbook of Nanomagnetism by : Rosa A. Lukaszew

Download or read book Handbook of Nanomagnetism written by Rosa A. Lukaszew. This book was released on 2015-10-06. Available in PDF, EPUB and Kindle. Book excerpt: This unique handbook compiles and details cutting-edge research in nanomagnetism and its applications in spintronics, magnetoplasmonics, and nonlinear magneto-optics. Fundamental aspects of magnetism relevant to nanodevices and new spin-transfer torque random-access memory (STT-RAM), current-induced domain wall motion memory, and spin torque oscill

Magnetization Dynamics at the Nanoscale in Nanoparticles and Thin Films

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Author :
Release : 2015
Genre :
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Book Synopsis Magnetization Dynamics at the Nanoscale in Nanoparticles and Thin Films by : Sergi Lendínez Escudero

Download or read book Magnetization Dynamics at the Nanoscale in Nanoparticles and Thin Films written by Sergi Lendínez Escudero. This book was released on 2015. Available in PDF, EPUB and Kindle. Book excerpt: Research in magnetic materials leads to new devices and technologies. As the technology progresses, the devices become smaller and this miniaturization allows more storage capacity and lower costs in the production of new technologies. As new and smaller materials are fabricated, new phenomena appear and thus new physics is needed to describe them. Nanomaterials meet characteristics of both the microscopic quantum world and the macroscopic classic world. This intermediate length scale is known as mesoscale. Nanomaterials can be obtained in a variety of forms, being nanoparticles and magnetic ultra-thin films some of the most used. These magnetic systems are very different in their composition: nanoparticles are grown with chemical reactions, and thin films are grown on a substrate by nanofabrication techniques such as sputtering or electron-beam evaporation. The magnetization might not be uniform in a magnetic thin film or in a large magnetic nanoparticle leading to the formation of magnetic domains. Magnetic domains are static structures that appear due to competition of the different magnetic energies and can be used to store and transport information. In all these systems, the magnetization dynamics gives rise to new behavior not visible in static measurements: quantum steps of the magnetization in molecular magnets; characteristic resonant frequencies that can be used to control the magnetic state of vortices; and formation of magnetic droplet solitons in thin films with perpendicular magnetic anisotropy. Understanding the dynamics of nanomaterials and the evolution of the magnetization is a key process to develop faster devices and technologies. The early studies of molecular magnets showed quantum effects at the macroscopic scale, which have allowed a better understanding of spin. Magnetic vortices have been proposed for multiple applications, from magnetic storage of information to cancer cell destruction. The recently discovered magnetic droplet soliton is also a very good candidate for technological applications due to the low current and magnetic field needed for its generation, and it is now a system with a growing interest in spintronics. In this dissertation we show some new dynamic phenomena. In the first part of the thesis we study systems that allow a macroscopic-spin model where spatial variations of magnetization are neglected. We develop a theory that sets the requirements for the observation of the rotational Doppler effect in a ferromagnetic system and we measure quantum effects in randomly oriented nanoparticles of a single-molecule magnet, which might be a good candidate for the observation of the Doppler effect. In the second part of the thesis, we study the magnetization dynamics in macroscopic systems that require a spatial dependence of the magnetic moment. We generate and control the dynamic states of the magnetic domains with oscillating fields, in the case of magnetic vortices, and with electrical currents, in the case of droplet solitons.

Linear and Nonlinear Magnetization Dynamics in Thin Ferromagnetic Films and Nanostructures

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Author :
Release : 2014
Genre :
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Book Synopsis Linear and Nonlinear Magnetization Dynamics in Thin Ferromagnetic Films and Nanostructures by :

Download or read book Linear and Nonlinear Magnetization Dynamics in Thin Ferromagnetic Films and Nanostructures written by . This book was released on 2014. Available in PDF, EPUB and Kindle. Book excerpt:

Magnetic Nanostructures in Modern Technology

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Release : 2007-10-14
Genre : Technology & Engineering
Kind : eBook
Book Rating : 385/5 ( reviews)

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Book Synopsis Magnetic Nanostructures in Modern Technology by : Bruno Azzerboni

Download or read book Magnetic Nanostructures in Modern Technology written by Bruno Azzerboni. This book was released on 2007-10-14. Available in PDF, EPUB and Kindle. Book excerpt: In this book, a team of outstanding scientists in the field of modern magnetic nanotechnologies illustrates the state-of-the-art in several areas of advanced magneto-electronic devices, magnetic micro-electromechanical systems and high density information storage technologies. Providing a unique source of information for the young physicist, chemist or engineer, the book also serves as a crucial reference for the expert scientist and the teacher of advanced university courses.

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