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Titlebook: Reshaping of Dirac Cones in Topological Insulators and Graphene; Álvaro Díaz Fernández Book 2021 The Editor(s) (if applicable) and The Aut

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Reshaping of Dirac Cones by Electric Fields, in a fully dynamical and experimentally feasible way. The topological protection of the Dirac cones is discussed, along with hand-waving arguments that relate to the quantum-confined Stark effect, allowing us understand the physics behind these results.
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Reshaping of Dirac Cones by Magnetic Fields,entations of the field that preserve crystalline symmetries such as mirror symmetry, the topological signature of surface states can survive the magnetic field. As we are able to observe, a suitably oriented magnetic field, complemented with an electric field perpendicular to the surface, renders th
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Book 2021 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 ex
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Surface States in ,-doped Topological Boundaries,toms during growth. In this case, the impurity concentration can be controlled in a very precise fashion. As we will show by means of an exactly solvable model, the Dirac state indeed survives the .-layer, while coexisting with a Rashba-split two-dimensional electron gas with non-trivial spin textures.
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2190-5053 ext.Contains an extensive chapter for the newcomer to the ma.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 fundamen
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