27 Best Books on Superconductivity

We have compiled a list of the Best Reference Books on Superconductivity, which are used by students of top universities, and colleges. This will help you choose the right book depending on if you are a beginner or an expert. Here is the complete list of Superconductivity Books with their authors, publishers, and an unbiased review of them as well as links to the Amazon website to directly purchase them. If permissible, you can also download the free PDF books on Superconductivity below.

1. Magnetism and Superconductivity

 
1."Magnetism and Superconductivity in Iron-based Superconductors as Probed by Nuclear Magnetic Resonance" by Franziska Hammerath
“Magnetism and Superconductivity in Iron-based Superconductors as Probed by Nuclear Magnetic Resonance” Book Review: For many decades, Nuclear Magnetic Resonance has been a fundamental topic in the study of superconducting materials. This book is designed for students seeking knowledge about Magnetism and Superconductivity, covering topics such as static electronic properties, and low excitations of electrons in the normal and superconducting state. It includes NMR results on Fe-based superconductors, reflecting the unconventional nature of superconductivity and its strong link to magnetism in the investigated compounds.

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2."Superconductivity in Ternary Compounds II: Superconductivity and Magnetism: 034 (Topics in Current Physics)" by Merrill B Maple
“superconductivity in Ternary Compounds II: Superconductivity and Magnetism” Book Review: This book is a comprehensive resource covering the topics of superconductivity and magnetism in ternary compounds. The book includes chapters on various types of superconductors, such as Chevrel phase compounds and heavy fermion systems. It also explores the relationship between superconductivity and magnetism and their coexistence in certain materials. This book is a valuable reference for researchers and graduate students in condensed matter physics.

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3."High Tc Superconductivity and Magnetism in T-J and T-T'-J Models" by Massimo Lugas
“High Tc Superconductivity and Magnetism in T-J and T-t’-J Models” Book Review: The target audience for this book is PhDs and scientists who are interested in numerical methods and strongly correlated systems. The book introduces a new Monte Carlo variational approach that has been applied to t-J and t-t’-J models to describe the experimental phase diagram of High-Tc Superconductors. The book focuses on the analysis of phase separation, d-wave superconductivity, and magnetic properties. It also describes the main experimental results on the phase diagrams of High-Tc materials and highlights the key factors responsible for their unusual behavior.

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4."Molecules Into Materials: Case Studies In Materials Chemistry - Mixed Valency, Magnetism And Superconductivity" by Peter Day
“Molecules Into Materials: Case Studies In Materials Chemistry – Mixed Valency, Magnetism And Superconductivity” Book Review: The focus of this book is to define the relationship between the structure and properties of inorganic and metal-organic solids. It provides comprehensive coverage of topics such as molecular metals and superconductors, with particular emphasis on charge transfer salts that combine conductivity with magnetism. The book offers detailed explanations of mixed-valency compounds and inorganic charge transfer spectra.

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5."Ruthenate and Rutheno-Cuprate Materials: Unconventional Superconductivity, Magnetism and Quantum Phase Transitions (Lecture Notes in Physics)" by C Noce and A Vecchione
“Ruthenate and Rutheno-Cuprate Materials: Unconventional Superconductivity, Magnetism and Quantum Phase Transitions” Book Review: This book is an essential resource for researchers and graduate students in condensed matter physics. The book delves into unconventional superconductivity and quantum phase transitions in ruthenate and rutheno-cuprate materials. It includes chapters on topics such as magnetic properties, pairing mechanisms, and novel electronic states. This book provides a comprehensive overview of the latest research on these materials and their potential for practical applications in the future.

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6."Superconductivity: A Very Short Introduction (Very Short Introductions)" by Stephen J Blundell
“Superconductivity: A Very Short Introduction” Book Review: This book provides a concise and accessible introduction to the theories of physics. It offers an engaging and informative account of the development of these theories, presenting a fascinating scientific detective story. The authors have successfully combined factual analysis, perspective, new ideas, and enthusiasm to make challenging and interesting topics highly readable, providing the reader with an intelligible insight into some of the deep and beautiful ideas of physics.

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7."Magnetism and Superconductivity (Theoretical and Mathematical Physics)" by S Lyle and Laurent-Patrick Levy
“Magnetism and Superconductivity” Book Review: The intended audience of this book is primarily graduate students and scientists working in the field. It offers a comprehensive overview of the modern understanding of magnetism and superconductivity, covering both microscopic and phenomenological aspects. The book is illustrated with current research topics, including the quantum Hall effect and mesoscopic aspects of superconductivity. The author uses simple examples and clear arguments to familiarize the reader with the underlying formalism in a systematic manner.

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8."Magnetism and Superconductivity in Low-Dimensional Systems: Utilization in Future Applications" by Dimosthenis Stamopoulos
“Magnetism & Superconductivity in Low-Dimensional Systems” Book Review: This book is designed for applications related to Nephrology and Hemodialysis, Quantum Computing, Electric Power Applications, Magnetic Recording and Electronics. This book discussews the current research topics in the physics of low-dimensional systems. The text covers a range of subjects, including magnetic nanoparticle-protein conjugates, transition metal spin clusters, plain and hybrid micro/nano wires embedded in a normal-metal matrix, and plain and hybrid magnetic/superconducting thin films. The book explores the unconventional magnetic and superconducting properties of these systems.

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9."Superconductivity, Magnetism and Magnets" by Lannie K Tran
“Superconductivity, Magnetism and Magnets” Book Review: This book discusses the concept and significance of superconductivity, providing an explanation of the mechanism behind the occurrence of high-Tc superconductivity and its various applications. It also presents the latest cutting-edge research in the field, consolidating new findings on the subject.

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10."New Research on Superconductivity and Magnetism" by Lannie K Tran
“New Research on Superconductivity and Magnetism” Book Review: This book provides an in-depth exploration of superconductivity and its significance. It elucidates the mechanism that underlies the occurrence of high-Tc superconductivity and its diverse applications. Furthermore, the book compiles new and innovative research in the field, highlighting the latest advancements in the subject.

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11."Concise Encyclopedia of Magnetic and Superconducting Materials (Advances in Materials Sciences and Engineering)" by J Evetts
“Concise Encyclopedia of Magnetic and Superconducting Materials (Advances in Materials Sciences and Engineering)” Book Review: This book is useful for students, teachers and material scientists, who are interested in knowing about magnetic and superconducting materials. It details the latest advances in existing magnetic and superconducting materials, as well as methods for improving upon them. The text explores various material systems and their respective properties, with the aid of diagrams and tables to facilitate comprehension.

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12."Superconducting Electronics (Nato ASI Subseries F:)" by Harold Weinstock and Martin Nisenoff
“Superconducting Electronics (Nato ASI Subseries F:)” Book Review: This book is designed for the students, scientists and researchers involved in the study of superconductors. This book emphasizes the significance of superconducting electronics and its versatile applications. The text delves into the use of superconductors in high-speed signal processing, which has immense implications for commercial, military, scientific, and medical domains. The book explores the impact of helium on the performance of superconductors, including heightened speed, sensitivity, reduced noise, and low power dissipation. Moreover, the book provides a detailed explanation of how superconductors are employed in SQUID magnetometers and Josephson voltage standards.

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2. Superconductivity and Low Temperature Physics

 
1."Superconductivity" by Charles
“Superconductivity” Book Review: This book provides descriptions of every aspect of the subject, covering a diverse range of topics ranging from classic materials to fullerenes. It aims to strike a balance between the breadth of topics covered while ensuring that they are explained in detail and in an easy-to-understand manner. The text is accompanied by a broad reference list and significant graphics from all areas of research, with detailed explanations of theoretical approaches. The book covers a variety of topics, including high-temperature superconductors, spectroscopy, critical states, transport properties, and tunneling. The subject of superconductivity is explored both theoretically and experimentally.

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2."Experimental Techniques in Low Temperature Physics" by G K White
“Experimental Techniques in Low Temperature Physics” Book Review: This book targets physicists, physical chemists, metallurgists, and engineers seeking to expand their knowledge in the field. It covers a range of topics, including the production and measurement of low temperatures, as well as the handling of liquified gases on a laboratory scale. The text also explores the principles and design details of experimental cryostats, encompassing issues related to heat transfer and temperature control. The book presents physical data on heat capacities and expansion coefficients, along with the electrical and thermal conductivities of materials used in low-temperature equipment fabrication.

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3."Methodological Aspects of the Development of Low Temperature Physics" by Kostas Gavroglu and Yorgos Goudaroulis
“Methodological Aspects of the Development of Low Temperature Physics” Book Review: The book is written in a systematic method. This helps understanding the two most remarkable problems in physics: superconductivity and superfluidity. These phenomena are not only peculiar in their own right, but they also represent the only known examples of macroscopic quantum behavior. This book is dedicated to the study of these “most peculiar” phenomena in physics and outlines the process of translating newly observed phenomena into physical problems.

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4."High-Temperature Superconductivity in Cuprates: The Nonlinear Mechanism and Tunneling Measurements" by A Mourachkine
“High-Temperature Superconductivity in Cuprates: The Nonlinear Mechanism and Tunneling Measurements” Book Review: This is an informative and well-written book on high-temperature superconductivity in cuprates. The author delves into the non-linear mechanism and tunneling measurements involved in the process. The book covers topics such as the history and development of superconductivity, the properties of cuprates, the phenomenology of the cuprate superconductors, and the experimental techniques used to study them. The author presents complex concepts in a clear and concise manner, making it accessible to graduate students and researchers in the field.

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5."Photoemission Studies of High-Temperature Superconductors" by David W Lynch and Clifford G Olson
“Photoemission Studies of High-Temperature Superconductors” Book Review: The focus of this book is on photoelectron spectroscopic techniques, covering both theoretical and practical aspects. It discusses angle-resolved photoelectron spectroscopy of valence electrons, as well as core level spectra (XPS), including special variations such as resonance photoemissions. The book also emphasizes the challenges in interpreting such spectra and obtaining high-resolution sample surfaces. This book is useful for graduate students and researchers in the fields of physics, chemistry, and materials science.

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3. Superconductivity, Materials and Applications

 
1."Introduction to Superconductivity" by A C Rose-Innes and E H Rhoderick
Book Review: This graduate-level textbook offers an introduction to superconductivity, including a dedicated chapter on high-temperature superconductivity. The book presents the basic concepts of superconductivity in solid state physics with clear explanations. It covers a wide range of topics including superconductors, zero resistance, diamagnetism, electrodynamics, transition thermodynamics, intermediate state, transport in superconductors, and microscopic theory of superconductivity.

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2."Superconductivity" by C P Pool
“Superconductivity” Book Review: The book covers a wide range of superconductivity topics and is suitable for both students and researchers in the field. It encompasses classical aspects as well as fullerenes and explains common theoretical concepts. It also delves into topics such as high temperature superconductors, spectroscopy, critical states, transport properties, and tunneling. The book includes numerous tables and illustrations to aid the readers’ understanding.

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3."Superconductivity: Basics and Applications to Magnets (Springer Series in Materials Science)" by R G Sharma
“Superconductivity: Basics and Applications to Magnets (Springer Series in Materials Science)” Book Review: This book focuses on the fundamentals and applications of superconductivity, making it a valuable reference for graduate students and researchers. Theoretical aspects and various phenomena related to superconductivity are given special attention, including type II superconductors and high-temperature cuprate superconductors. The book also explores various applications of superconductivity, such as superconducting magnets for accelerators and fusion reactors, and highlights the fabrication techniques needed for future magnetic applications.

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4."Superconductivity: Theory, Materials & Applications (Superconductivity Research and Applications)" by Vladimir Rem Romanovskii
“Superconductivity: Theory, Materials & Applications (Superconductivity Research and Applications)” Book Review: The book covers a range of aspects related to superconductivity and can be beneficial for both students and researchers. It provides a comprehensive explanation of superconductor properties including stability conditions, tunnelling spectroscopy, and vortices in high temperatures. It covers ion modified high-Tc Josephson junctions, squids, metallic superconductors, and numerical calculations of trapped magnetic fields.

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5."Superconductivity: Properties, Applications & New Developments (Materials Science and Technologies)" by Paulette Grant
“Superconductivity: Properties, Applications & New Developments (Materials Science and Technologies)” Book Review: The book presents the study of superconductivity and its related topics, suitable for graduate students and researchers in the field. Divided into five chapters, the book covers various aspects of nonmagnetic noncentrosymmetric superconductors, such as LaRhSi3, LaIrSi3, SrFe2As2, and FeTe0.8S0.2 compounds. It also explores the control of the quantum field through nonlinear lattice vibrations and selective excitation. The book also discusses the mathematical concepts of the Bose-Einstein condensation formalism of many-fermion systems. The final chapter provides a detailed microscopic theory of superconductivity.

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6."Superconductivity: Physics and Applications" by Kristian Fossheim and Asle Sudboe
“Superconductivity: Physics and Applications” Book Review: The book covers the latest developments in the field of superconductivity and is accessible to both researchers and scientists. It explores BCS theory, microscopic theory, and low-Tc superconductors. Each chapter concludes with a range of numerical problems, providing readers with the opportunity to gain a deeper understanding of the concepts discussed. The book features interviews with several prominent researchers in the field.

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7."Superconductivity: Applications Today & Tomorrow (Chemistry Research and Applications)" by Muralidhar Miryala
“Superconductivity: Applications Today & Tomorrow (Chemistry Research and Applications)” Book Review: The book covers various concepts related to superconductivity, making it a valuable resource for scientists, researchers, and both undergraduate and graduate students. The book comprises 16 chapters, which discuss a range of topics, including high-quality control, uniform production of superconducting bulk materials using the infiltration growth (IG) process, flux pinning, mechanical properties, Maglev, bearings, and flywheels, trapped field magnets, magnetic shielding, and pulsed field magnetization. The book provides dedicated chapters on Superconducting Quantum Interference Device and covers applications, fabrication, and design aspects of superconducting devices. The production of a new class of superconductors using solid-state and liquid-phase reactions is also highlighted, with emphasis on the MgB2 superconductor.

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8."MgB2 Superconducting Wires (World Scientific Series in Applications of Superconductivity and Related Phenomena)" by René Flükiger
“MgB2 Superconducting Wires (World Scientific Series in Applications of Superconductivity and Related Phenomena)” Book Review: The book mainly covers the MgB2 superconductor and is aimed at students and researchers studying in the field. It discusses the fundamental properties of MgB2 and provides insight into its fabrication and design strategies. The book explores a variety of applications for MgB2, such as MRI magnets and high current cables, as well as permanent magnets, ultrafine wires for space applications, and wind generator projects.

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9."Superconductivity and Applications" by Yi-Han Kao and Hoi S Kwok
“Superconductivity and Applications” Book Review: The book is a compilation of research papers presented at the Third Annual Conference on Superconductivity and Applications held on September 19-21, 1989. It is relevant to scientists and researchers in the field. The book covers various aspects of high-temperature superconductivity and the properties of these materials. Techniques for processing such as thin film deposition are also discussed. The book also explores the scope of the subject for future relevance.

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10."Handbook of Superconducting Materials" by David A Cardwell and David S Ginley
“Handbook of Superconducting Materials” Book Review: This book is a useful resource for researchers and undergraduate students studying the processing of superconducting materials. Its main focus is on the characterization and fabrication techniques used in this field. The book emphasizes the significance of fabrication techniques in high temperature superconducting technology. It offers guidance on the manufacturing and processing of superconducting materials, delving into the various methods involved in the process in detail. The book contains diagrams and examples to explain the concepts in detail. It provides both academic and industrial research for practicing engineers in this field.

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We have put a lot of effort into researching the best books on Superconductivity and came out with a recommended list and their reviews. If any more book needs to be added to this list, please email us. We are working on free pdf downloads for books on Superconductivity and will publish the download link here. Fill out this Superconductivity books pdf download" request form for download notification.

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