Tutorial: From Topology to Hall Effects -- Implications of Berry Phase Physics

Fuente: arXiv
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Main Authors: Sprinkart, Nico, Scheer, Elke, Di Bernardo, Angelo
Format: Preprint
Published: 2024
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author Sprinkart, Nico
Scheer, Elke
Di Bernardo, Angelo
author_facet Sprinkart, Nico
Scheer, Elke
Di Bernardo, Angelo
contents The Berry phase is a fundamental concept in quantum mechanics with profound implications for understanding topological properties of quantum systems. This tutorial provides a comprehensive introduction to the Berry phase, beginning with the essential mathematical framework required to grasp its significance. We explore the intrinsic link between the emergence of a non-trivial Berry phase and the presence of topological characteristics in quantum systems, showing the connection between the Berry phase and the band structure as well as the phase's gauge-invariant nature during cyclic evolutions. The tutorial delves into various topological effects arising from the Berry phase, such as the quantum, anomalous, and spin Hall effects, which exemplify how these quantum phases manifest in observable phenomena. We then extend our discussion to cover the transport properties of topological insulators, elucidating their unique behaviour rooted in Berry phase physics. This tutorial aims at equipping its readers with a robust understanding of the basic theory around the Berry phase and its pivotal role in the realm of topological quantum phenomena.
format Preprint
id arxiv_https___arxiv_org_abs_2407_10464
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Tutorial: From Topology to Hall Effects -- Implications of Berry Phase Physics
Sprinkart, Nico
Scheer, Elke
Di Bernardo, Angelo
Mesoscale and Nanoscale Physics
The Berry phase is a fundamental concept in quantum mechanics with profound implications for understanding topological properties of quantum systems. This tutorial provides a comprehensive introduction to the Berry phase, beginning with the essential mathematical framework required to grasp its significance. We explore the intrinsic link between the emergence of a non-trivial Berry phase and the presence of topological characteristics in quantum systems, showing the connection between the Berry phase and the band structure as well as the phase's gauge-invariant nature during cyclic evolutions. The tutorial delves into various topological effects arising from the Berry phase, such as the quantum, anomalous, and spin Hall effects, which exemplify how these quantum phases manifest in observable phenomena. We then extend our discussion to cover the transport properties of topological insulators, elucidating their unique behaviour rooted in Berry phase physics. This tutorial aims at equipping its readers with a robust understanding of the basic theory around the Berry phase and its pivotal role in the realm of topological quantum phenomena.
title Tutorial: From Topology to Hall Effects -- Implications of Berry Phase Physics
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2407.10464