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Quantized phenomena of transport and...
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Mogi, Masataka.
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Quantized phenomena of transport and magneto-optics in magnetic topological insulator heterostructures
Record Type:
Electronic resources : Monograph/item
Title/Author:
Quantized phenomena of transport and magneto-optics in magnetic topological insulator heterostructures/ by Masataka Mogi.
Author:
Mogi, Masataka.
Published:
Singapore :Springer Nature Singapore : : 2022.,
Description:
xv, 109 p. :ill. (some col.), digital ;24 cm.
Notes:
"Doctoral Thesis accepted by The University of Tokyo, Tokyo, Japan."
[NT 15003449]:
Introduction -- Experimental Methods -- Magnetic Modulation Doping For Quantum Anomalous Hall Effect -- Magnetic Proximity Induced Quantum Anomalous Hall Effect -- Topological Phase Transitions Relevant to Quantum Anomalous Hall Effect -- Half-integer Quantized Electrodynamics in 3D Topological Insulator -- Summary.
Contained By:
Springer Nature eBook
Subject:
Topological insulators. -
Online resource:
https://doi.org/10.1007/978-981-19-2137-7
ISBN:
9789811921377
Quantized phenomena of transport and magneto-optics in magnetic topological insulator heterostructures
Mogi, Masataka.
Quantized phenomena of transport and magneto-optics in magnetic topological insulator heterostructures
[electronic resource] /by Masataka Mogi. - Singapore :Springer Nature Singapore :2022. - xv, 109 p. :ill. (some col.), digital ;24 cm. - Springer theses,2190-5061. - Springer theses..
"Doctoral Thesis accepted by The University of Tokyo, Tokyo, Japan."
Introduction -- Experimental Methods -- Magnetic Modulation Doping For Quantum Anomalous Hall Effect -- Magnetic Proximity Induced Quantum Anomalous Hall Effect -- Topological Phase Transitions Relevant to Quantum Anomalous Hall Effect -- Half-integer Quantized Electrodynamics in 3D Topological Insulator -- Summary.
This book presents experimental studies on emergent transport and magneto-optical properties in three-dimensional topological insulators with two-dimensional Dirac fermions on their surfaces. Designing magnetic heterostructures utilizing a cutting-edge growth technique (molecular beam epitaxy) stabilizes and manifests new quantization phenomena, as confirmed by low-temperature electrical transport and time-domain terahertz magneto-optical measurements. Starting with a review of the theoretical background and recent experimental advances in topological insulators in terms of a novel magneto-electric coupling, the author subsequently explores their magnetic quantum properties and reveals topological phase transitions between quantum anomalous Hall insulator and trivial insulator phases; a new topological phase (the axion insulator); and a half-integer quantum Hall state associated with the quantum parity anomaly. Furthermore, the author shows how these quantum phases can be significantly stabilized via magnetic modulation doping and proximity coupling with a normal ferromagnetic insulator. These findings provide a basis for future technologies such as ultra-low energy consumption electronic devices and fault-tolerant topological quantum computers.
ISBN: 9789811921377
Standard No.: 10.1007/978-981-19-2137-7doiSubjects--Topical Terms:
3488974
Topological insulators.
LC Class. No.: TK7872.T57 / M64 2022
Dewey Class. No.: 621.31937
Quantized phenomena of transport and magneto-optics in magnetic topological insulator heterostructures
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Introduction -- Experimental Methods -- Magnetic Modulation Doping For Quantum Anomalous Hall Effect -- Magnetic Proximity Induced Quantum Anomalous Hall Effect -- Topological Phase Transitions Relevant to Quantum Anomalous Hall Effect -- Half-integer Quantized Electrodynamics in 3D Topological Insulator -- Summary.
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This book presents experimental studies on emergent transport and magneto-optical properties in three-dimensional topological insulators with two-dimensional Dirac fermions on their surfaces. Designing magnetic heterostructures utilizing a cutting-edge growth technique (molecular beam epitaxy) stabilizes and manifests new quantization phenomena, as confirmed by low-temperature electrical transport and time-domain terahertz magneto-optical measurements. Starting with a review of the theoretical background and recent experimental advances in topological insulators in terms of a novel magneto-electric coupling, the author subsequently explores their magnetic quantum properties and reveals topological phase transitions between quantum anomalous Hall insulator and trivial insulator phases; a new topological phase (the axion insulator); and a half-integer quantum Hall state associated with the quantum parity anomaly. Furthermore, the author shows how these quantum phases can be significantly stabilized via magnetic modulation doping and proximity coupling with a normal ferromagnetic insulator. These findings provide a basis for future technologies such as ultra-low energy consumption electronic devices and fault-tolerant topological quantum computers.
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Physics and Astronomy (SpringerNature-11651)
based on 0 review(s)
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EB TK7872.T57 M64 2022
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