Diverse quantization phenomena in layered materials 1st Edition by Chiun-Yan Lin, Ching-Hong Ho, Jhao-Ying Wu, Thi-Nga Do, Po-Hsin Shih, Shih-Yang Lin, Ming-Fa Lin – Ebook PDF Instant Download/DeliveryISBN: 0367420287, 9780367420284
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Product details:
ISBN-10 : 0367420287
ISBN-13 : 9780367420284
Author: Chiun-Yan Lin, Ching-Hong Ho, Jhao-Ying Wu, Thi-Nga Do, Po-Hsin Shih, Shih-Yang Lin, Ming-Fa Lin
This book illustrates commonly used synthesis methods of these 2D materials and compares the calculated results and experimental measurements, including novel features not yet reported. The book also discusses experimental measurements of magnetic quantization, theoretical modeling for studying systems and covers diversified magneto-electronic properties, magneto-optical selection rules, unusual quantum Hall conductivities, and single- and many-particle magneto-Coulomb excitations. Rich and unique behaviors are clearly revealed in few-layer graphene systems with distinct stacking configuration, stacking-modulated structures, silicon-doped lattices, bilayer silicene/germanene systems with the bottom-top and bottom-bottom buckling structures, monolayer and bilayer phosphorene systems, and quantum topological insulators. The generalized tight-binding model, the static and dynamic Kubo formulas, and the random-phase approximation are developed/modified to thoroughly explore the fundamental properties and propose the concise physical pictures. Different high-resolution experimental measurements are discussed in detail, and they are consistent with the theoretical predictions.
Diverse quantization phenomena in layered materials 1st Table of contents:
1. Introduction.
2. Experimental Measurements on Magnetic Quantization.
3. Theoretical Models.
4. Twisted Bilayer Graphene Systems.
5. Stacking-Configuration-Modulated Bilayer Graphene.
6. AA-Bottom-Top Bilayer Silicene Systems.
7. AB-Bottom-Top Bilayer Silicene.
8. Si-Doped Graphene Systems.
9. Unusual Quantum Transport Properties.
10. Rich Magneto-Coulomb Excitations in Germanene.
11. Topological Characterization of Landau Levels for 2D Massless Dirac Fermions in 3D Layered Systems.
12. Concluding Remarks.
13. Future Perspectives and Open Issues.
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Tags: Diverse quantization, phenomena, layered materials, Chiun Yan Lin, Ching Hong Ho, Jhao Ying Wu, Thi Nga Do, Po Hsin Shih, Shih Yang Lin, Ming Fa Lin


