MACROSPIN & MICROMAGNETIC SIMU

MACROSPIN & MICROMAGNETIC SIMU

Author: Tui Zeng

Publisher: Open Dissertation Press

Published: 2017-01-26

Total Pages: 146

ISBN-13: 9781361014196

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This dissertation, "Macrospin and Micromagnetic Simulations of Spintronic Devices for Magnetic Sensors and Oscillator Applications" by Tui, Zeng, 曾推, was obtained from The University of Hong Kong (Pokfulam, Hong Kong) and is being sold pursuant to Creative Commons: Attribution 3.0 Hong Kong License. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation. All rights not granted by the above license are retained by the author. Abstract: In this thesis, by categorizing the application of spintronic devices with the standard of signal type being processed, the spintronic devices based magnetic field sensors which process the D.C. signal are studied with micromagnetic simulation and the spintronic devices based spin-torque oscillators which process the A.C. signal are studied with macrospin simulation. By conducting micromagnetic simulation, the thermally excited mag-noise in spintronic device based magnetic field sensors is systematically studied. In magnetic tunnel junctions (MTJ) based magnetic field sensor, the spatial distribution of the thermally excited mag-noise indicates that the edges are the main contributor of thermal mag-noise in the free layer (FL). Both hard bias (HB) field and applied field could suppress the thermal mag-noise in edges. A relatively high applied field will decrease the influence of HB field on mag-noise in edges. The edge effect is not applicable for MTJ sensors with circular cross section. In ferromagnetic ring structure based magnetic field sensor, the saturated state, triangle state, half triangle state, onion state, and vortex state are explored and studied, respectively. The mag-noise calculation shows that triangle state is the main reason for the mag-noise exhibiting 1/f tendency in both the low-frequency range and high-frequency range in relaxed state, while the onion state explains why a noise peak appears in high-frequency range in the relaxed state. It is proved that the area of the ferromagnetic rings is not the determining factor for the thermal mag-noise distribution in the saturated state. In dual-vortex structure based magnetic field sensor, the combination of the dual-vortex motion and the magnetic noise properties make it possible to measure the external field (along hard bias direction) through measuring the FMR peak positions or the integrated thermal mag-noise, which indicated two novel field sensing mechanisms using elliptical permalloy single layer. Besides the study of the thermally excited mag-noise in spintronic device based magnetic field sensors, the spintronic device based spintorque oscillators (STOs) is fully investigated by macrospin simulation. Conclusions demonstrate numerically and analytically how a STO locks to a microwave field (Hac). A magnetic energy based analysis is used to explain this phenomenon. This result provides a possible way to synchronize serially connected STOs by tuning each single STO's phase shift with external microwave field, which could finally enhance the locking efficiency, locking range and output power of serially connected STOs. Meanwhile, the capacitance effect on the oscillation characteristics and the switching characteristics of the STOs has also been studied. The micromagnetic simulation of the noise sources in traditional GMR/TMR based magnetic field sensor and novel spintronic device based magnetic field sensors not onlyprovide reliable explanations of noise-related phenomenon in magnetic field sensors but also offer guidance on how to fabricate magnetic field sensors with relative low thermal magnetic noise and high performance. Meanwhile, the macrospin study of the spin-torque oscillators which process A.C electrical current signal has provided theoretical fundamentals for next generation microwave generator. Subjects: Spintronics - Materials Magnetic materials


VLSI

VLSI

Author: Tomasz Wojcicki

Publisher: CRC Press

Published: 2017-12-19

Total Pages: 490

ISBN-13: 1351831437

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Recently the world celebrated the 60th anniversary of the invention of the first transistor. The first integrated circuit (IC) was built a decade later, with the first microprocessor designed in the early 1970s. Today, ICs are a part of nearly every aspect of our daily lives. They help us live longer and more comfortably, and do more, faster. All this is possible because of the relentless search for new materials, circuit designs, and ideas happening on a daily basis at industrial and academic institutions around the globe. Showcasing the latest advances in very-large-scale integrated (VLSI) circuits, VLSI: Circuits for Emerging Applications provides a balanced view of industrial and academic developments beyond silicon and complementary metal–oxide–semiconductor (CMOS) technology. From quantum-dot cellular automata (QCA) to chips for cochlear implants, this must-have resource: Investigates the trend of combining multiple cores in a single chip to boost performance of the overall system Describes a novel approach to enable physically unclonable functions (PUFs) using intrinsic features of a VLSI chip Examines the VLSI implementations of major symmetric and asymmetric key cryptographic algorithms, hash functions, and digital signatures Discusses nonvolatile memories such as resistive random-access memory (Re-RAM), magneto-resistive RAM (MRAM), and floating-body RAM (FB-RAM) Explores organic transistors, soft errors, photonics, nanoelectromechanical (NEM) relays, reversible computation, bioinformatics, asynchronous logic, and more VLSI: Circuits for Emerging Applications presents cutting-edge research, design architectures, materials, and uses for VLSI circuits, offering valuable insight into the current state of the art of micro- and nanoelectronics.


Handbook of Spin Transport and Magnetism

Handbook of Spin Transport and Magnetism

Author: Evgeny Y. Tsymbal

Publisher: CRC Press

Published: 2016-04-19

Total Pages: 797

ISBN-13: 1439803781

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In the past several decades, the research on spin transport and magnetism has led to remarkable scientific and technological breakthroughs, including Albert Fert and Peter Grunberg's Nobel Prize-winning discovery of giant magnetoresistance (GMR) in magnetic metallic multilayers. Handbook of Spin Transport and Magnetism provides a comprehensive, bal


Examination and simulation of new magnetic materials for the possible application in memory cells

Examination and simulation of new magnetic materials for the possible application in memory cells

Author: Andrea Ehrmann

Publisher: Logos Verlag Berlin GmbH

Published: 2014

Total Pages: 166

ISBN-13: 3832537724

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Magnetic storage media are a topic of great interest for technological and fundamental research. Examinations of nanostructured magnetic systems for storage media often aim at decreasing the pattern size, in order to enhance the possible information density in a given area. Here another approach is chosen: Intermediate magnetic states, occurring during magnetization reversal, which are stable at zero external field, can lead to quaternary or higher-order multilevel magnetic storage media. In this way, the storage density can be enhanced without decreasing the size of the magnetic nanoparticles. The book describes different nanostructured systems in which such additional stable states can be found in simulation and experiment, examines their magnetization reversal dynamics, and gives recommendations for shapes and materials of future nanostructured systems for data storage media.


Handbook of Nanophysics

Handbook of Nanophysics

Author: Klaus D. Sattler

Publisher: CRC Press

Published: 2010-09-17

Total Pages: 782

ISBN-13: 1420075519

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Many bottom-up and top-down techniques for nanomaterial and nanostructure generation have enabled the development of applications in nanoelectronics and nanophotonics. Handbook of Nanophysics: Nanoelectronics and Nanophotonics explores important recent applications of nanophysics in the areas of electronics and photonics. Each peer-reviewed c


Nanoelectronics and Information Technology

Nanoelectronics and Information Technology

Author: Rainer Waser

Publisher: John Wiley & Sons

Published: 2012-05-29

Total Pages: 1041

ISBN-13: 3527409270

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Fachlich auf höchstem Niveau, visuell überzeugend und durchgängig farbig illustriert: Das ist die neue Auflage der praxisbewährten Einführung in spezialisierte elektronische Materialien und Bauelemente aus der Informationstechnologie. Über ein Drittel des Inhalts ist neu, alle anderen Beiträge wurden gründlich überarbeitet und aktualisiert.


Introduction to Magnetic Random-Access Memory

Introduction to Magnetic Random-Access Memory

Author: Bernard Dieny

Publisher: John Wiley & Sons

Published: 2016-11-14

Total Pages: 264

ISBN-13: 1119079357

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Magnetic random-access memory (MRAM) is poised to replace traditional computer memory based on complementary metal-oxide semiconductors (CMOS). MRAM will surpass all other types of memory devices in terms of nonvolatility, low energy dissipation, fast switching speed, radiation hardness, and durability. Although toggle-MRAM is currently a commercial product, it is clear that future developments in MRAM will be based on spin-transfer torque, which makes use of electrons’ spin angular momentum instead of their charge. MRAM will require an amalgamation of magnetics and microelectronics technologies. However, researchers and developers in magnetics and in microelectronics attend different technical conferences, publish in different journals, use different tools, and have different backgrounds in condensed-matter physics, electrical engineering, and materials science. This book is an introduction to MRAM for microelectronics engineers written by specialists in magnetic materials and devices. It presents the basic phenomena involved in MRAM, the materials and film stacks being used, the basic principles of the various types of MRAM (toggle and spin-transfer torque; magnetized in-plane or perpendicular-to-plane), the back-end magnetic technology, and recent developments toward logic-in-memory architectures. It helps bridge the cultural gap between the microelectronics and magnetics communities.


Unconventional Computation and Natural Computation

Unconventional Computation and Natural Computation

Author: Daniela Genova

Publisher: Springer Nature

Published: 2023-05-31

Total Pages: 221

ISBN-13: 3031340345

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This book constitutes the proceedings of the 20th International Conference on Unconventional Computation and Natural Computation, UCNC 2023, held in Jacksonville, FL, USA, in March 13–17, 2023. The UCNC conference series covers fundamental research on computation beyond the standard Turing model, including computational models and methods inspired by nature, and the computational properties of natural processes.


Spin Dynamics in Confined Magnetic Structures I

Spin Dynamics in Confined Magnetic Structures I

Author: Burkard Hillebrands

Publisher: Springer Science & Business Media

Published: 2003-07-01

Total Pages: 363

ISBN-13: 3540409076

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Introductory chapters help newcomers to understand the basic concepts, and the more advanced chapters give the current state of the art for most spin dynamic issues in the milliseconds to femtoseconds range. Emphasis is placed on both the discussion of the experimental techniques and on the theoretical work. The comprehensive presentation of these developments makes this volume very timely and valuable for every researcher working in the field of magnetism.