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The articles collected in this book cover a wide range of materials
with extraordinary superconducting and magnetic properties. For
many of the materials studied, strong electronic correlations
provide a link between these two phenomena which were long thought
to be highly antagonistic. Both the progress in our understanding
of fundamental physical processes and the advances made towards the
development of devices are reported here. The materials studied
come in a variety of forms and shapes from bulk to epitaxial films,
nano- and heterostructures down to those involving single molecules
and double quantum dots. In some cases the structuring serves the
study of bulk properties. More often it is the change of these
properties with nanostructuring and the properties of different
materials in close proximity with each other that are of key
interest because of possible application of these materials or
heterostructures to quantum computing and spintronics.
The articles collected in this book cover a wide range of materials
with extraordinary superconducting and magnetic properties. For
many of the materials studied, strong electronic correlations
provide a link between these two phenomena which were long thought
to be highly antagonistic. Both the progress in our understanding
of fundamental physical processes and the advances made towards the
development of devices are reported here. The materials studied
come in a variety of forms and shapes from bulk to epitaxial films,
nano- and heterostructures down to those involving single molecules
and double quantum dots.
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