This book demonstrates how the new phenomena in superconductivity on the nanometer scale (FFLO state, triplet superconductivity, Crossed Andreev Reflection, synchronized generation etc.) serve as the basis for the invention and development of novel nanoelectronic devices and systems. It demonstrates how rather complex ideas and theoretical models, like odd-pairing, non-uniform superconducting state, pi-shift etc., adequately describe the processes in real superconducting nanostructues and novel devices based on them. The book is useful for a broad audience of readers, researchers, engineers, PhD-students, lectures and others who would like to gain knowledge in the frontiers of superconductivity at the nanoscale.
This book demonstrates how the new phenomena in superconductivity on the nanometer scale (FFLO state, triplet superconductivity, Crossed Andreev Reflection, synchronized generation etc.) serve as the basis for the invention and development of novel nanoelectronic devices and systems. It demonstrates how rather complex ideas and theoretical models, like odd-pairing, non-uniform superconducting state, pi-shift etc., adequately describe the processes in real superconducting nanostructues and novel devices based on them. The book is useful for a broad audience of readers, researchers, engineers, PhD-students, lectures and others who would like to gain knowledge in the frontiers of superconductivity at the nanoscale.
Presents the basics of nanostructured superconductors Broadly discusses nano-effects in superconductivity . Demonstrates how new phenomena in superconductivity on the nanometer scale serve as basis for novel nanoelectronic devices. Describes how complex ideas and theoretical models define the processes in real superconducting nanostructures Includes supplementary material: sn.pub/extras
Anatoli Sidorenko
boundary conditions in diffusive heterostructures crossed Andreev reflection ferromagnetic Josephson junctions pi-junctions point-contact spectroscopy properties of hybrids spin pairing spin-switch sub-mm Wave Spectrometer superconductivity superconductor-ferromagnet proximity effect