This book deals with the discovery and explanation of the quantum Hall effect and its fundamental principles. It is meant for undergraduate and graduate students of physics, engineering, and applied sciences studying condensed matter physics. Doctoral students and researchers of this subject will also find it equally useful. It begins with a historical overview of this effect wherein the experiment and the physical systems are described. It progresses to cover discrete symmetries like inversion symmetry, time reversal symmetry, particle-hole symmetry, and chiral symmetry. It also examines how the Hamiltonian transforms under such symmetry operations. Two 1D models, namely the Su-Schrieffer-Heeger (SSH) model and a Kitaev chain with superconducting correlations, are discussed too. Then, the quantum Hall effect in graphene is explained. Further, the spin Hall effect is studied which may have prospects of using graphene as spintronic devices. The book ends with a brief review on fractional quantum Hall effect.
| ISBN: | 9781316511756 |
| Publication date: | 23rd January 2025 |
| Author: | Saurabh Basu |
| Publisher: | Cambridge University Press |
| Format: | Hardback |
| Pagination: | 180 pages |
| Genres: |
Condensed matter physics (liquid state and solid state physics) Mesoscopic physics Nanosciences Quantum physics (quantum mechanics and quantum field theory) Quantum computing and information |
This book deals with the discovery and explanation of the quantum Hall effect and its fundamental principles. It is meant for undergraduate and graduate students of physics, engineering, and applied sciences studying condensed matter physics. Doctoral students and researchers of this subject will also find it equally useful. It begins with a historical overview of this effect wherein the experiment and the physical systems are described. It progresses to cover discrete symmetries like inversion symmetry, time reversal symmetry, particle-hole symmetry, and chiral symmetry. It also examines how the Hamiltonian transforms under such symmetry operations. Two 1D models, namely the Su-Schrieffer-Heeger (SSH) model and a Kitaev chain with superconducting correlations, are discussed too. Then, the quantum Hall effect in graphene is explained. Further, the spin Hall effect is studied which may have prospects of using graphene as spintronic devices. The book ends with a brief review on fractional quantum Hall effect.
Quantum Hall Effect features in the following genres: Condensed matter physics (liquid state and solid state physics), Mesoscopic physics, Nanosciences, Quantum physics (quantum mechanics and quantum field theory), Quantum computing and information
Quantum Hall Effect is available in Hardback
Quantum Hall Effect was written by Saurabh Basu and published by Cambridge University Press
Quantum Hall Effect has 180 pages
£112.50