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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.
Electronics and optics of solids --- Chemical structure --- Electrical engineering --- Biotechnology --- nanotechniek --- biotechnologie --- transistoren --- halfgeleiders
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Over the last decade the interest in nanoscale materials and their applications in novel electronic devices have been increasing tremendously. This is caused by the unique properties of nanoscale materials and the outstanding performance of nanoscale devices. The fascinating and often unrivalled properties of nanoscale materials and devices opened new and sometimes unexpected fields of applications. Today, the widespread applications range from the detection of explosives, drugs and fissionable materials to bio- and infrared-sensors, spintronic devices, data storage media, magnetic read heads for computer hard disks, single-electron devices, microwave electronic devices, and many more. This book contains a collection of papers giving insight into the fundamentals and applications of nanoscale devices. The main focus is on the synthesis and characterization of nanoscale magnetic materials, the fundamental physics and materials aspects of solid-state nanostructures, the development of novel device concepts and design principles for nanoscale devices, as well as on applications in electronics with special emphasis on defence against the threat of terrorism.
spectrometrie --- Chemical technology --- supergeleiding --- nanotechniek --- Quantum mechanics. Quantumfield theory --- Electromagnetism. Ferromagnetism --- meetmethoden --- magnetisme --- quantummechanica --- Spectrometric and optical chemical analysis --- fysicochemie --- Electrical engineering --- Measuring methods in physics --- fysica --- Solid state physics --- Nanoscience --- Nanotechnology --- Nanosciences --- Nanotechnologie --- Congresses. --- Congrès --- EPUB-LIV-FT LIVCHIMI SPRINGER-B --- Engineering. --- Physics. --- Nanotechnology. --- Surfaces (Physics). --- Microwaves. --- Nanotechnology and Microengineering. --- Physics, general. --- Surfaces and Interfaces, Thin Films. --- Microwaves, RF and Optical Engineering. --- Measurement Science and Instrumentation. --- Physics --- Surface chemistry --- Surfaces (Technology) --- Molecular technology --- Nanoscale technology --- High technology --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Dynamics --- Hertzian waves --- Electric waves --- Electromagnetic waves --- Geomagnetic micropulsations --- Radio waves --- Shortwave radio --- Construction --- Industrial arts --- Technology --- Materials—Surfaces. --- Thin films. --- Optical engineering. --- Physical measurements. --- Measurement . --- Measuring --- Mensuration --- Mathematics --- Metrology --- Physical measurements --- Measurements, Physical --- Mathematical physics --- Measurement --- Mechanical engineering --- Films, Thin --- Solid film --- Solid state electronics --- Solids --- Coatings --- Thick films --- Nanoscale devices --- NATO
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