Description: Reshaping of Dirac Cones in Topological Insulators and Graphene by Álvaro Díaz Fernández Dirac cones are ubiquitous to non-trivial quantum matter and are expected to boost and reshape the field of modern electronics. The thesis begins with a brief historical introduction which is followed by an extensive chapter that endows the reader with the basic tools of symmetry and topology needed to understand the remaining text. FORMAT Hardcover LANGUAGE English CONDITION Brand New Publisher Description Dirac cones are ubiquitous to non-trivial quantum matter and are expected to boost and reshape the field of modern electronics. Particularly relevant examples where these cones arise are topological insulators and graphene. From a fundamental perspective, this thesis proposes schemes towards modifying basic properties of these cones in the aforementioned materials. The thesis begins with a brief historical introduction which is followed by an extensive chapter that endows the reader with the basic tools of symmetry and topology needed to understand the remaining text. The subsequent four chapters are devoted to the reshaping of Dirac cones by external fields and delta doping. At all times, the ideas discussed in the second chapter are always a guiding principle to understand the phenomena discussed in those four chapters. As a result, the thesis is cohesive and represents a major advance in our understanding of the physics of Dirac materials. Back Cover Dirac cones are ubiquitous to non-trivial quantum matter and are expected to boost and reshape the field of modern electronics. Particularly relevant examples where these cones arise are topological insulators and graphene. From a fundamental perspective, this thesis proposes schemes towards modifying basic properties of these cones in the aforementioned materials. The thesis begins with a brief historical introduction which is followed by an extensive chapter that endows the reader with the basic tools of symmetry and topology needed to understand the remaining text. The subsequent four chapters are devoted to the reshaping of Dirac cones by external fields and delta doping. At all times, the ideas discussed in the second chapter are always a guiding principle to understand the phenomena discussed in those four chapters. As a result, the thesis is cohesive and represents a major advance in our understanding of the physics of Dirac materials. Table of Contents Introduction.- Reshaping of Dirac Cones by Electric Fields.- Reshaping of Dirac Cones by Magnetic Fields.- Surface States in d-doped Topological Boundaries.- Floquet Engineering of Dirac Cones.- Appendix. Feature Nominated as an outstanding Ph.D. thesis by the Universidad Complutense de Madrid More than 50 illustrations accompany and enrich the main text Contains an extensive chapter for the newcomer to the main ideas of topological insulators Provides a detailed account of the effects of external fields on the reshaping of Dirac cones Details ISBN3030615545 Series Springer Theses Language English ISBN-10 3030615545 ISBN-13 9783030615543 Format Hardcover DOI 10.1007/978-3-030-61555-0 Pages 183 Year 2020 Publication Date 2020-12-10 Publisher Springer Nature Switzerland AG Edition 1st Imprint Springer Nature Switzerland AG Place of Publication Cham Country of Publication Switzerland Illustrations 55 Illustrations, color; 1 Illustrations, black and white; XXVI, 183 p. 56 illus., 55 illus. in color. UK Release Date 2020-12-10 Author Álvaro Díaz Fernández Edition Description 1st ed. 2021 Alternative 9783030615574 DEWEY 530.41 Audience Professional & Vocational We've got this At The Nile, if you're looking for it, we've got it. With fast shipping, low prices, friendly service and well over a million items - you're bound to find what you want, at a price you'll love! TheNile_Item_ID:134084563;
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ISBN-13: 9783030615543
Book Title: Reshaping of Dirac Cones in Topological Insulators and Graphene
Number of Pages: 183 Pages
Language: English
Publication Name: Reshaping of Dirac Cones in Topological Insulators and Graphene
Publisher: Springer Nature Switzerland Ag
Publication Year: 2020
Subject: Chemistry, Physics
Item Height: 235 mm
Item Weight: 489 g
Type: Textbook
Author: Alvaro Diaz Fernandez
Subject Area: Mechanical Engineering
Item Width: 155 mm
Format: Hardcover