Coulomb Excitations and Decays in Graphene-Related Systems

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Coulomb Excitations and Decays in Graphene-Related Systems

  • 言語:ENG
  • ISBN:9780367218614
  • eISBN:9781000011777

ファイル: /

Description

Coulomb Excitations and Decays in Graphene-Related Systems provides an overview of the subject under the effects of lattice symmetries, layer numbers, dimensions, stacking configurations, orbital hybridizations, intralayer and interlayer hopping integrals, spin-orbital couplings, temperatures, electron/hole dopings, electric field, and magnetic quantization while presenting a new theoretical framework of the electronic properties and the electron-electron interactions together.

This book presents a well-developed theoretical model and addresses important advances in essential properties and diverse excitation phenomena. Covering plenty of critical factors related to the field, the book also addresses the theoretical model which is applicable to various dimension-enriched graphene-related systems and other 2D materials, including layered graphenes, graphites, carbon nanotubes, silicene, and germanene.

The text is aimed at professionals in materials science, physics, physical chemistry, and upper level students in these fields.

Table of Contents

1. Introduction

2. Theories for Electronic Excitations in Layered Graphenes, 3D Graphites, and 1D Carbon Nanotubes: Experimental Equipments

3. Monolayer Graphene

4. AA-Stacked Graphenes

5. AB-Stacked Graphenes

6. ABC-Stacked Graphenes

7. AAB-Stacked Graphene

8. Sliding Bilayer Graphene

9. Diversified Effects due to a Perpendicular Electric Field

10. Magnetoelectronic Excitations: Monolayer and Bilayer Graphenes

11. 3D Coulomb Excitations of Simple Hexagonal, Bernal, and Rhombohedral Graphites

12. 1D Electronic Excitations in Metallic and Semiconducting Nanotubes

13. Electronic Excitations in Monolayer Silicene and Germanene

14. Coulomb Decay Rates in Graphene

15. Concluding Remarks and Perspectives

16. Problems

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