Topological States on Interfaces Protected by Symmetry
Seiten
2016
|
Softcover reprint of the original 1st ed. 2015
Springer Verlag, Japan
978-4-431-56217-7 (ISBN)
Springer Verlag, Japan
978-4-431-56217-7 (ISBN)
In this book, the author theoretically studies two aspects of topological states.
First, novel states arising from hybridizing surface states of topological insulators are theoretically introduced. As a remarkable example, the author shows the existence of gapless interface states at the interface between two different topological insulators, which belong to the same topological phase. While such interface states are usually gapped due to hybridization, the author proves that the interface states are in fact gapless when the two topological insulators have opposite chiralities. This is the first time that gapless topological novel interface states protected by mirror symmetry have been proposed.
Second, the author studies the Weyl semimetal phase in thin topological insulators subjected to a magnetic field. This Weyl semimetal phase possesses edge states showing abnormal dispersion, which is not observed without mirror symmetry. The author explains that the edge states gain a finite velocity by a particular form of inversion symmetry breaking, which makes it possible to observe the phenomenon by means of electric conductivity.
First, novel states arising from hybridizing surface states of topological insulators are theoretically introduced. As a remarkable example, the author shows the existence of gapless interface states at the interface between two different topological insulators, which belong to the same topological phase. While such interface states are usually gapped due to hybridization, the author proves that the interface states are in fact gapless when the two topological insulators have opposite chiralities. This is the first time that gapless topological novel interface states protected by mirror symmetry have been proposed.
Second, the author studies the Weyl semimetal phase in thin topological insulators subjected to a magnetic field. This Weyl semimetal phase possesses edge states showing abnormal dispersion, which is not observed without mirror symmetry. The author explains that the edge states gain a finite velocity by a particular form of inversion symmetry breaking, which makes it possible to observe the phenomenon by means of electric conductivity.
Dr. Ryuji Takahashi Department of Applied Physics, The University of Tokyo takahashi@appi.t.u-tokyo.ac.jp
Introduction.- Topological Invariant and topological Phases.- Gapless Interface States between Two Topological Insulators.- Weyl Semimetals in a Thin Topological Insulator.- Summary and outlook.- Properties of the Chern numbers.- Calculation for the interface Fermi loops.
Erscheinungsdatum | 29.10.2016 |
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Reihe/Serie | Springer Theses |
Zusatzinfo | 6 Illustrations, color; 34 Illustrations, black and white; XII, 90 p. 40 illus., 6 illus. in color. |
Verlagsort | Tokyo |
Sprache | englisch |
Maße | 155 x 235 mm |
Themenwelt | Naturwissenschaften ► Chemie ► Analytische Chemie |
Naturwissenschaften ► Physik / Astronomie ► Atom- / Kern- / Molekularphysik | |
Naturwissenschaften ► Physik / Astronomie ► Festkörperphysik | |
Technik ► Elektrotechnik / Energietechnik | |
Technik ► Maschinenbau | |
Schlagworte | Chiralities of Topological Insulators • Dirac Cone • Gapless Topological Interface States • mirror symmetry • surface states • Thin Topological Insulators • Topological Insulator • Topological Invariance • Weyl Semimetal Phase |
ISBN-10 | 4-431-56217-6 / 4431562176 |
ISBN-13 | 978-4-431-56217-7 / 9784431562177 |
Zustand | Neuware |
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