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Magnetics, Dielectrics, and Wave Propagation with MATLAB® Codes (2nd edition)
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Magnetics, Dielectrics, and Wave Propagation with MATLAB® Codes (2nd edition)
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Because future microwave, wireless communication systems, computer
chip designs and sensor systems, it will require miniature
fabrication processes in the order of nano meters or less as well
as the marriage of various material technologies to produce
composites consisting of many different materials. This requires
distinctly multi-disciplinary collaborations, implying that
specialized approaches will not be able to address future world
markets in communication, computer and electronic miniaturized
products. Anticipating that many students lack specialized
simultaneous training in magnetism and magnetics, as well as in
other material technologies, Magnetics, Dielectrics, and Wave
Propagation with MATLAB Codes avoids application-specific
descriptions, opting for a general point view of materials per se.
Specifically, the book develops a general theory to show how a
magnetic system of spins are coupled to acoustic motions,
magnetoelectric systems and superconductors. Phenomenological
approaches are connected to atomic scale formulations reducing
complex calculations to essential forms, addressing basic
interactions at any scale of dimensionalities. With simple and
clear coverage of everything from first principles to calculation
tools, it revisits fundamentals that govern magnetic, acoustic,
superconducting, magnetoelectric motions at the atomic and
macroscopic scales, including superlattices. Constitutive equations
in Maxwell’s equations are introduced via general free energy
expressions which include magnetic parameters as well as acoustic,
magnetoelectric, semiconductor and superconducting parameters
derived from first principles. More importantly, it facilitates the
derivation of these parameters, as the dimensionality of materials
is reduced toward the microscopic scale. Thus, introducing new
concepts. The deposition of ferrite films at the atomic scale
complements the approach toward the understanding of the physics of
miniaturized composites. Thus, a systematic formalism of deriving
the permeability or the magnetoelectric coupling tensors from first
principles, rather than from an ad-hoc approach, bridges the gap
between microscopic and macroscopic principles as applied to wave
propagation and other applications.
General
Imprint: |
Taylor & Francis
|
Country of origin: |
United Kingdom |
Release date: |
October 2023 |
First published: |
2024 |
Authors: |
Carmine Vittoria
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Dimensions: |
234 x 156mm (L x W) |
Pages: |
552 |
Edition: |
2nd edition |
ISBN-13: |
978-1-03-255568-3 |
Categories: |
Books
|
LSN: |
1-03-255568-8 |
Barcode: |
9781032555683 |
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