
Electromagnetics of Superconductor/Paramagnet Heterostructures by Yuri Genenko
Conditioning of magnetic fields is a novel route to improve type-II superconductor performance in high-current and high-field applications directed at increasing the current-carrying capability and the critical fields of superconductor/paramagnet heterostructures, as well as reducing their hysteretic AC loss. Through a methodical analysis and noteworthy solutions, Electromagnetics of Superconductor/Paramagnet Heterostructures presents a phenomenological account of the remarkable electromagnetic properties of superconductor paramagnet heterostructures, as captured by Maxwell's electrodynamics, generalized London theory, and Bean's model of the critical state. Beginning with the introduction of the basic concepts of superconductivity which are necessary for understanding of the following studies, exact closed-form solutions are revealed for a range of idealized heterostructures. Investigations of the superconductor constituents primarily focus on strips or tapes, filaments and tubes, with a transport current imposed or a magnetic field applied. Geometrical as well as materials aspects of both the magnetic shielding effect and the hysteretic AC loss undergo detailed analysis which permits identification of the conditions for non-dissipative critical, or even overcritical, states to exist. Crucial issues such as the barrier against the penetration of magnetic flux at superconductor/paramagnet interfaces or the nucleation of magnetic vortex loops equally find their place. Finally, based on the magnetostatic-electrostatic analogues, the finite-element simulations of the Meissner state and the critical state of thin superconductors in paramagnetic environments of arbitrary shape and permeability are performed. This presents an effective tool for designing superconductor/paramagnet heterostructures.-
The Principles of Quantum Mechanics
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Bose-Einstein Condensation and Superfluidity
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Liquid Crystal Elastomers
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Quantum Chromodynamics
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Nonlocal Gravity
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Dynamical Theory of Crystal Lattices
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Principles of Statistical Mechanics
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Tokamaks
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Superconducting State: Mechanisms and Materials
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Novel Superfluids
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The Principles of Nuclear Magnetism
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Entropy and the Time Evolution of Macroscopic Systems
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Problems of Condensed Matter Physics
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Rare Earth Magnetism
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Helium Three
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Mathematical Theory of Quantum Fields
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Introduction to 3+1 Numerical Relativity
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Electronic and Optical Properties of Conjugated Polymers
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The Physics of Interacting Electrons in Disordered Systems
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Bose-Einstein Condensation
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CP Violation
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Excitations in Organic Solids
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Brownian Motion
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Quantum Statistical Field Theory
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Equations of Motion in General Relativity
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Physics of Ferromagnetism
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Statistical Physics of Spin Glasses and Information Processing
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Chern-Simons Theory, Matrix Models, and Topological Strings
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Stellarator and Heliotron Devices
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Mechanisms of Conventional and High Tc Superconductivity
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The Physics of Inertial Fusion
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Quantum Physics in One Dimension
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Plasma Spectroscopy
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Advanced General Relativity
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Ion Traps
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The Standard Model in the Making
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Muon Spin Rotation, Relaxation, and Resonance
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The Ubiquitous Photon
Yuri Genenko obtained his PhD in 1987 and worked for the Donetsk Physical and Technical Institute until 1996. In 1993 he was awarded the national prize for young scientists for studies of layered superconductors and a DSc from the Institute for Metal Physics in Kiev for investigations of magnetic flux structures in low-dimensional superconductors (1995). He currently works at the Technical University of Darmstadt as a research professor.
Hermann Rauh graduated from the University of Tübingen, Germany, in 1971. Following work on the electrical resistivity of dislocations in copper performed at the Max Planck Institute for Metals Research afterwards, he obtained his PhD from the University of Stuttgart in 1975. Having obtained his habilitation in 1985, Rauh joined the Materials Department at the University of Oxford as a Visiting Fellow. With simultaneous affiliations to the Harwell Laboratory, he held a Research Fellowship at Wolfson College, Oxford. In 1994 Rauh became Professor of Theoretical Materials Science at the Technical University of Darmstadt.
| SKU | Unavailable |
| ISBN 13 | 9780198714576 |
| ISBN 10 | 0198714572 |
| Title | Electromagnetics of Superconductor/Paramagnet Heterostructures |
| Author | Yuri Genenko |
| Series | International Series Of Monographs On Physics |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Oxford University Press |
| Year published | 2025-02-04 |
| Number of pages | 320 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |





































