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Spin Transfer Torque Based Devices, Circuits, and Memory

This first-of-its-kind resource is completely dedicated to spin transfer torque (STT) based devices, circuits, and memory. A wide range;

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Metallic Spintronic Devices

developments but also: Describes spintronic applications in current and future magnetic recording devices Discusses spin-transfer torque;

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Introduction to Spintronics

. Some metal-based spintronic devices are tunnel magnetoresistance, spin-transfer torque and spin-wave logic devices. Non-volatile spin-logic;

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Introduction to Magnetic Random-Access Memory

of MRAM (toggle and spin-transfer torque; magnetized in-plane or perpendicular-to-plane), the back-end magnetic technology, and recent;

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Non-volatile In-memory Computing by Spintronics

bottleneck is from memory, we aim to develop an energy-efficient in-memory computing platform in this book. First, the models of spin-transfer torque;

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Non-Volatile In-Memory Computing by Spintronics

bottleneck is from memory, we aim to develop an energy-efficient in-memory computing platform in this book. First, the models of spin-transfer torque;

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Spintronics

Magnetic Memory Devices, Spin FET, Race Track Memory and Quantum Computing.;

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Spintronics

Magnetic Memory Devices, Spin FET, Race Track Memory and Quantum Computing.;

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Handbook of Nanomagnetism

, and nonlinear magneto-optics. Fundamental aspects of magnetism relevant to nanodevices and new spin-transfer torque random-access memory (STT;

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Neuromorphic Circuits for Nanoscale Devices

Nanoscale devices attracted significant research effort from the industry and academia due to their operation principals being based on;

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Spintronics

Spintronics is based on the control and manipulation of electron spin instead of, or in addition to, its charge, leading to novel;

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Single-electron Devices And Circuits In Silicon

characterization of single-electron transistors, single-electron memory devices, few-electron transfer devices such as electron pumps and turnstiles, and;

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Nanomagnetic and Spintronic Devices for Energy-Efficient Memory and Computing

memory, logic and higher order information processing. * Discusses spin-based devices where the spin degree of freedom of charge carriers are;

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Recent Advances in Magnetic Insulators - From Spintronics to Microwave Applications

use of magnetic insulators to produce and transfer spin currents, the excitation of spin waves in magnetic insulators by spin transfer torque;

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Spin Waves

important concepts, encouraging the reader to further explore the physics of spin wave excitations and the engineering of spin wave devices by;

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Nanoscale Silicon Devices

nonvolatile computing systems, spin-based qubits, magnetoelectric devices, NEMS devices, tunnel FETs, dopant engineering, and single-electron transfer;

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Nanoscale Silicon Devices

nonvolatile computing systems, spin-based qubits, magnetoelectric devices, NEMS devices, tunnel FETs, dopant engineering, and single-electron transfer;

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Spintronics in Nanoscale Devices

detailed background descriptions of spin-based effects and devices and their theoretical analysis in nanoelectronic circuits.;

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Semiconductor Quantum Bits

demonstrations of complex flying qubit states and first applications of semiconductor-based quantum information devices are given, too.;

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Memristive Devices for Brain-Inspired Computing

Memristive Devices for Brain-Inspired Computing: From Materials, Devices, and Circuits to Applications-Computational Memory, Deep;

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Magnetic Dynamics in Antiferromagnetically Coupled Ferrimagnets

useful in spintronic devices in that (1) The non adiabatic spin transfer torque in antiferromagnets acts as a staggered magnetic field, which can;

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Magnetic Dynamics in Antiferromagnetically Coupled Ferrimagnets

useful in spintronic devices in that (1) The non adiabatic spin transfer torque in antiferromagnets acts as a staggered magnetic field, which can;

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Electrical and Electronic Devices, Circuits and Materials

-capacity memory elements. Electrical and Electronic Devices, Circuits and Materials: Design and Applications will assist the development of basic;

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Spintronics

atomic scale. Furthermore, applications are discussed with a focus on elementary spintronics devices such as spin valves, memory cells and hard;

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Embedded Systems Hardware for Software Engineers

: Architecture examples Memory Memory address decoding Read-only memory and other related devices Input and output ports Analog-to-digital and;

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Encyclopedia of Electrical Engineering Research

doped with non-magnetic elements; spin transfer torque effect and its applications; fundamentals of half-metallic full-heusler alloys;

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Endohedral Fullerenes Electron Transfer and Spin

encapsulated metal species and the carbon cage. It also reviews spin-based phenomena caused by the shielding of endohedral spin by the fullerene, and;

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