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High-Temperature Superconductivity in Cuprates: The Nonlinear Mechanism and Tunneling Measurements (2002)

High-Temperature Superconductivity in Cuprates

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"High-Temperature Superconductivity in Cuprates" by A. Mourachkine is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

The main purpose of the book is to present a description of the mechanism of high-temperature superconductivity and to discuss the physics of high-temperature superconductors, both entirely based on experimental facts. The pairing mechanism of this remarkable phenomenon is based on an anomaly found in tunneling (V) characteristics of some cuprates. By using the soliton theory, it is then shown that this anomaly is caused by pairs of quasi-one dimensional excitations - bisolitons - bound due to a moderately strong, nonlinear electron-phonon interaction. At the same time, analysis of experimental data unambiguously shows that magnetic (spin) fluctuations mediate the phase coherence in cuprates. The mechanism of superconductivity in quasi-one dimensional organic superconductors and heavy fermions is discussed too. In cuprates, the origins of five different energy/temperature scales are identified. Finally, three main principles of superconductivity are introduced at the end of the book. Analysis of tunneling and angle-resolved photoemission measurements is presented in the last chapter. The book which contains 300 pages with 180 illustrations is addressed to researchers and graduate students in all branches of exact sciences.

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Best For: Researchers and students in condensed matter physics and materials science focusing on superconductivity.
Focus: Explaining the mechanism of high-temperature superconductivity in cuprates using experimental tunneling data and soliton theory.
Covers: The physics of high-temperature superconductors, tunneling measurement anomalies, and the nonlinear pairing mechanism in cuprates.
Why It Matters: Provides an experimentally grounded explanation of superconductivity mechanisms important for advancing understanding and development of superconducting materials.

"High-Temperature Superconductivity in Cuprates" by A. Mourachkine is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

Topic: Devices & Sensors

Author: A. Mourachkine

Who this is for:

  • Physics students
  • Science-minded readers
  • Readers building technical understanding

Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.

The main purpose of the book is to present a description of the mechanism of high-temperature superconductivity and to discuss the physics of high-temperature superconductors, both entirely based on experimental facts. The pairing mechanism of this remarkable phenomenon is based on an anomaly found in tunneling (V) characteristics of some cuprates. By using the soliton theory, it is then shown that this anomaly is caused by pairs of quasi-one dimensional excitations - bisolitons - bound due to a moderately strong, nonlinear electron-phonon interaction. At the same time, analysis of experimental data unambiguously shows that magnetic (spin) fluctuations mediate the phase coherence in cuprates. The mechanism of superconductivity in quasi-one dimensional organic superconductors and heavy fermions is discussed too. In cuprates, the origins of five different energy/temperature scales are identified. Finally, three main principles of superconductivity are introduced at the end of the book. Analysis of tunneling and angle-resolved photoemission measurements is presented in the last chapter. The book which contains 300 pages with 180 illustrations is addressed to researchers and graduate students in all branches of exact sciences.

AuthorA. Mourachkine
PublisherSpringer Science & Business Media
Published2002-07-31
ISBN-139781402008108
BindingHardcover
Pages326
LanguageEnglish
SubjectsScience
TopicDevices & Sensors
SeriesFundamental Theories of Physics

Format: Hardcover

Length: 326 pages

Language: English

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