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By covering theory, design, and fabrication of nanostructured
superconducting materials, this monograph is an invaluable resource
for research and development. Examples are energy saving solutions,
healthcare, and communication technologies. Key ingredients are
nanopatterned materials which help to improve the superconducting
critical parameters and performance of superconducting devices, and
lead to novel functionalities. Contents Tutorial on nanostructured
superconductors Imaging vortices in superconductors: from the
atomic scale to macroscopic distances Probing vortex dynamics on a
single vortex level by scanning ac-susceptibility microscopy STM
studies of vortex cores in strongly confined nanoscale
superconductors Type-1.5 superconductivity Direct visualization of
vortex patterns in superconductors with competing vortex-vortex
interactions Vortex dynamics in nanofabricated chemical solution
deposition high-temperature superconducting films Artificial
pinning sites and their applications Vortices at microwave
frequencies Physics and operation of superconducting single-photon
devices Josephson and charging effect in mesoscopic superconducting
devices NanoSQUIDs: Basics & recent advances Bi2Sr2CaCu2O8
intrinsic Josephson junction stacks as emitters of terahertz
radiation| Interference phenomena in superconductor-ferromagnet
hybrids Spin-orbit interactions, spin currents, and magnetization
dynamics in superconductor/ferromagnet hybrids
Superconductor/ferromagnet hybrids
For emerging energy saving technologies superconducting materials
with superior performance are needed. Such materials can be
developed by manipulating the "elementary building blocks" through
nanostructuring. For superconductivity the "elementary blocks" are
Cooper pair and fluxon (vortex). This book presents new ways how to
modify superconductivity and vortex matter through nanostructuring
and the use of nanoscale magnetic templates. The basic
nano-effects, vortex and vortex-antivortex patterns, vortex
dynamics, Josephson phenomena, critical currents, and interplay
between superconductivity and ferromagnetism at the nanoscale are
discussed. Potential applications of nanostructured superconductors
are also presented in the book.
For emerging energy saving technologies superconducting materials
with superior performance are needed. Such materials can be
developed by manipulating the "elementary building blocks" through
nanostructuring. For superconductivity the "elementary blocks" are
Cooper pair and fluxon (vortex). This book presents new ways how to
modify superconductivity and vortex matter through nanostructuring
and the use of nanoscale magnetic templates. The basic
nano-effects, vortex and vortex-antivortex patterns, vortex
dynamics, Josephson phenomena, critical currents, and interplay
between superconductivity and ferromagnetism at the nanoscale are
discussed. Potential applications of nanostructured superconductors
are also presented in the book.
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Paperback
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R398
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Discovery Miles 3 300
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