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Topological insulator and related topics /

Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Li, Lu, Sun, Kai
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Cambridge, MA : Academic Press, 2021.
Colección:Semiconductors and semimetals ; v. 108.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Intro
  • Topological Insulator and Related Topics
  • Copyright
  • Contents
  • Contributors
  • Preface
  • Chapter One: Electronic structures of topological quantum materials studied by ARPES
  • 1. Introduction to ARPES
  • 1.1. Basic concept
  • 1.2. General principle
  • 1.3. Experimental instrument
  • 1.3.1. Light source
  • 1.3.2. Vacuum system
  • 1.3.3. Sample manipulator
  • 1.3.4. Electron analyzer
  • 1.4. ARPES spectrum
  • 2. ARPES studies on topological quantum materials
  • 2.1. Topological insulating phases
  • 2.1.1. Topological insulator
  • 2.1.2. Weak topological insulator
  • 2.1.3. Topological crystalline insulator
  • 2.2. Topological semimetals
  • 2.2.1. Topological Dirac semimetal
  • 2.2.2. Topological Weyl semimetal
  • 2.2.3. Type-II topological Weyl/Dirac semimetals
  • 2.2.4. Topological nodal line semimetals
  • 2.2.5. Topological semimetals with unconventional fermions
  • 2.3. Topological superconductors
  • 3. Summary and perspective
  • References
  • Chapter Two: Anomalous transport properties in topological semimetals
  • 1. Introduction
  • 2. Chiral anomaly
  • 2.1. Brief review of 2D QH system
  • 2.1.1. Bulk state
  • 2.1.2. Relation to edge state
  • 2.2. WSM as a 3D surface state of 4D bulk QH system
  • 2.3. WSM in real 3D bulk
  • 3. Fermi arcs
  • 4. Field induced AHE and ATE (or ANE)
  • 4.1. Example 1: In-PbSnTe
  • 4.1.1. When inversion symmetry is preserved
  • 4.1.2. When inversion symmetry is broken
  • 4.1.3. Effect of Berry curvature in the WSM phase of Pb1-xSnxTe
  • 4.1.3.1. Initial clue of Berry curvature in the WSM phase under pressure
  • 4.1.3.2. Berry curvature extracted by in-plane Hall and Nernst measurements
  • 4.1.3.3. Berry curvature response in any magnetic field direction
  • 4.2. Example 2: ZrTe5
  • 4.3. Example 3: Cd3As2
  • 5. Conclusion and future outlook
  • References.