The Oxford Handbook of Small Superconductors

The Oxford Handbook of Small Superconductors

by A.V. Narlikar (Editor)

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Overview

The Oxford Handbook of Small Superconductors by A.V. Narlikar


This handbook is about a remarkable set of materials that are technically referred to as "mesoscopic superconductors", which for all practical purposes are tiny or small in their dimensions, ranging from a few micrometers down to a nanometer. At this level of smallness, the superconducting properties are dramatically changed, showing the dominance of quantum effects. Ground breaking research studies of small superconductors have emerged, and in a world obsessed with miniaturization of electronic device technology, small superconductors acquire even greater relevance and timeliness for the development of exciting novel quantum devices.

The chapters, contributed by noted researchers and frontrunners in the field from 15 countries, are presented in three parts, namely progress in basic studies, materials specific research, and advances in nanodevices. The contents of the handbook should be of immediate interest to advanced level university students and researchers particularly in physics, materials science, nanoscience and engineering departments. Various reviews and overviews appearing in the book should answer the queries and curiosities of non-specialists interested in nanoscale superconductivity. At the start, the book carries an extended introduction for readers new to the field. The book should also appeal to scientists and engineers from electronic industries interested in knowing the current status of the theory, manufacture, and future of mesoscopic superconductors. In doing so, this volume offers the opportunity to engage with cutting edge research in one of the most exciting fields of physics today and tomorrow.

Product Details

ISBN-13: 9780198738169
Publisher: Oxford University Press
Publication date: 03/19/2017
Pages: 704
Product dimensions: 7.60(w) x 9.80(h) x 1.50(d)

About the Author

A.V. Narlikar, Fellow, Indian National Science Academy

A.V. Narlikar has been active researcher in the field of superconductors for over 50 years. He received PhD and ScD degrees in this field from the University of Cambridge, UK. For nearly three decades Professor Narlikar headed the Superconductivity Division at the National Physical Laboratory, New Delhi, India. He is presently a senior scientist and a Fellow of Indian National Science Academy, working at UDCSR, in Indore. He is also a Visiting Scientist in the Applied Superconductivity and Cryoscience Group at the Department of Materials Science and Metallurgy, University of Cambridge, UK and at the Physics Department, University of Hamburg, Germany. Besides Superconductors, his active research interests are extended in nanoscience and SPM techniques. Professor Narlikar has contributed over 300 research papers to international refereed journals and has over 60 edited/authored books to his credit.

Table of Contents

Part I: Basic Studies
1. Introduction: Small Superconductors, A.V. Narlikar
2. Local Scale Spectroscopic Studies of Vortex Organization in Mesoscopic Superconductors, Dimitri Roditchev, Tristan Cren, Christophe Brun & Milorad Milosevic
3. Multi-Vortex States in Mesoscopic Superconductors, N. Kokubo, S. Okayasu & K. Kadowaki
4. Proximity Effect: A New Insight From In-Situ Fabricated Hybrid Nanostructures, J.C. Cuevas, Dimitri Roditchev, Tristan Cren & Christophe Brun
5. Andreev Reflection and Related Studies in Low-Dimensional Superconducting Systems, D. Daghero, G.A. Ummarino & R.S. Gonnelli
6. Topological Superconductors and Majorana Fermions, Yao-Yi Li & Jin-Feng Jia
7. Surface and Interface Superconductivity, S. Gariglo, M. Scheurer, J. Schmalian, A.M.R.V.L. Monterio, S. Goswami & A. Caviglia
Part II: Materials Aspects
8. Mesoscopic Effects in Superconductor-Ferromagn Hybrids, Goran Karapetro, Steven A. Moore & Maria Iavarone
9. Theoretical Study of THz Emission from HTS Cuprates, H. Asai
10. Macromagnetic Measurements on Electrochemically Grown Mesoscopic Superconductors, A.Muller, S.E.C. Dale, M.A. Engbarth
11. Growth and Characterization of HTSC Nanowires and Nanoribbons, M.R. Koblischka
12. Mesoscopic Structures and Their Effects on High Tc Superconductivity, H. Zhang
13. Magnetic Flux Avalanches in Superconducting Films with Mesoscopic Artificial Patterns, M. Motta, A.V. Silhanek & W.A. Ortiz
Part III: Device Technology
14. Superconducting Spintronics and Devices, M.G. Blamire & J.W.A. Robinson
15. Barriers in Josephson Junctions: An Overview, Martin P. Weides
16. Hybrid Superconducting Devices Based on Quantum Wires, K. Grove-Rasmussen, T. Sand-Jespersen, A. Jellinggaard & J. Nygard
17. Superconducting Nano Devices, John Gallop & Ling Hao
18. Superconducting Quantum Bits of Information - Coherence and Design Improvements, Jonas Bylander
19. NanoSQUIDs Applied to the Investigation of Small Magnetic Systems, Maria Jose Martinez-Perez, Reinhold Kleiner & Dieter Koelle

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