Torrent details for "Gupta R. Fundamentals of Low Dimensional Magnets 2022 [andryold1]"    Log in to bookmark

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A low-dimensional magnet is a key to the next generation of electronic devices. In some respects, low-dimensional magnets refer to nanomagnets (nanostructured magnets) or single-molecule magnets (molecular nanomagnets). They also include the group of magnetic nanoparticles, which have been widely used in biomedicine, technology, industries, and environmental remediation.
Low-dimensional magnetic materials can be used effectively in the future in powerful computers (hard drives, magnetic random-access memory, ultra-low power consumption switches, etc.). The properties of these materials largely depend on the doping level, phase, defects, and morphology. This book covers various nanomagnets and magnetic materials. The basic concepts, various synthetic approaches, characterizations, and mathematical understanding of nanomaterials are provided. Some fundamental applications of 1D, 2D, and 3D materials are covered.
This book provides the fundamentals of low-dimensional magnets along with synthesis, theories, structure-property relations, and applications of ferromagnetic nanomaterials. This book broadens our fundamental understanding of ferromagnetism and mechanisms for realization and advancement in devices with improved energy efficiency and high storage capacity.
Editors
Nanomagnets: Basics, Applications, and New Prospectives
Nanostructured Magnetic Semiconductors
Nanowire Magnets: Synthesis, Properties, and Applications
Synthesis Techniques for Low Dimensional Magnets
2D Magnetic Systems: Magnetic Properties, Measurement Techniques, and Device Applications
3D Magnonic Structures as Interconnection Element in Magnonic Networks
Nanostructured Hybrid Magnetic Materials
Methods for the Syntheses of Perovskite Magnetic Nanomagnets
Design of Room Temperature d0 Ferromagnetism for Spintronics Application: Theoretical Perspectives
Crystal Structures and Properties of Nanomagnetic Materials
Nanomagnetic Materials: Structural and Magnetic Properties
Magnetism in Monoatomic and Bimetallic Clusters: A Global Geometry Optimization Approach
Nanoscale Characterization
Mathematical Modeling and Simulation of Exchange Coupling Constant (J) and Zero- Field Splitting Parameters (D)
Novel Magnetism in Ultrathin Films With Polarized Neutron Reflectometry
Magnetosomes: Biological Synthesis of Magnetic Nanostructures
Theory and Modeling of Spintronics of Nanomagnets
Research Trends and Statistical- Thermodynamic Modeling the a"- Fe16N2- Based Phase for Permanent Magnets
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