Magnetic Heterostructures Magnetic Heterostructures

Magnetic Heterostructures

Advances and Perspectives in Spinstructures and Spintransport

    • $249.99
    • $249.99

Publisher Description

Magnetic heterostructures constitute an important field in magnetism and nanotechnology, which has developed over the past fifteen years due to important advances in epitaxial- growth techniques and lithographic processes. Magnetic heterostructures combine different physical properties which do not exist in nature. Examples are semiconductors/ferromagnets, superconductors/ferromagnets, and ferromagnets/antiferromagnets. These combinations display rich and novel physical properties different from those that exit in any single one of them. Interlayer exchange coupling, exchange bias, proximity effects, giant magneto-resistance, tunneling magneto-resistance, spininjection and spintransport are examples of new physical phenomena that rely on the combination of different materials layers. Since the literature on magnetic heterostructures is widely spread and highly specialized, the situation calls for a book that provides an overview of the basics and the state of the art of magnetic heterostructures. These contributions by renowned experts and leading scientists in the field provide an introduction for the young researcher, as well as an expert overview on the present status and future challenges.

GENRE
Science & Nature
RELEASED
2007
October 26
LANGUAGE
EN
English
LENGTH
376
Pages
PUBLISHER
Springer Berlin Heidelberg
SELLER
Springer Nature B.V.
SIZE
6.3
MB
Handbook of Magnetic Materials Handbook of Magnetic Materials
2012
Magnetism: Volume I Magnetism: Volume I
1963
Magnetism and Superconductivity in Iron-based Superconductors as Probed by Nuclear Magnetic Resonance Magnetism and Superconductivity in Iron-based Superconductors as Probed by Nuclear Magnetic Resonance
2012
NMR-MRI, µSR and Mössbauer Spectroscopies in Molecular Magnets NMR-MRI, µSR and Mössbauer Spectroscopies in Molecular Magnets
2007
Quantum Magnetism Quantum Magnetism
2008
Superconductivity Superconductivity
2014