Strain driven topological phase transitions in atomically thin films of group IV and v elements in the honeycomb structures

10.1088/1367-2630/16/10/105018

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Main Authors: Huang, Z.-Q, Hsu, C.-H, Chuang, F.-C, Liu, Y.-T, Lin, H, Su, W.-S, Ozolins, V, Bansil, A
Other Authors: CENTRE FOR ADVANCED 2D MATERIALS
Format: Article
Published: Institute of Physics Publishing 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/175301
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spelling sg-nus-scholar.10635-1753012023-09-07T09:27:53Z Strain driven topological phase transitions in atomically thin films of group IV and v elements in the honeycomb structures Huang, Z.-Q Hsu, C.-H Chuang, F.-C Liu, Y.-T Lin, H Su, W.-S Ozolins, V Bansil, A CENTRE FOR ADVANCED 2D MATERIALS DEPT OF PHYSICS Calculations Electric insulators Electronic properties Electronic structure Energy gap Germanium Honeycomb structures Lead Metals Phase diagrams Quantum Hall effect Spin Hall effect Topology First-principles calculation Quantum Spin hall effect Spin-orbit couplings Topological bands Topological characteristics Topological insulators Topological phase Two Dimensional (2 D) Tensile strain 10.1088/1367-2630/16/10/105018 New Journal of Physics 16 105018 2020-09-09T07:22:34Z 2020-09-09T07:22:34Z 2014 Article Huang, Z.-Q, Hsu, C.-H, Chuang, F.-C, Liu, Y.-T, Lin, H, Su, W.-S, Ozolins, V, Bansil, A (2014). Strain driven topological phase transitions in atomically thin films of group IV and v elements in the honeycomb structures. New Journal of Physics 16 : 105018. ScholarBank@NUS Repository. https://doi.org/10.1088/1367-2630/16/10/105018 1367-2630 https://scholarbank.nus.edu.sg/handle/10635/175301 Institute of Physics Publishing Unpaywall 20200831
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic Calculations
Electric insulators
Electronic properties
Electronic structure
Energy gap
Germanium
Honeycomb structures
Lead
Metals
Phase diagrams
Quantum Hall effect
Spin Hall effect
Topology
First-principles calculation
Quantum Spin hall effect
Spin-orbit couplings
Topological bands
Topological characteristics
Topological insulators
Topological phase
Two Dimensional (2 D)
Tensile strain
spellingShingle Calculations
Electric insulators
Electronic properties
Electronic structure
Energy gap
Germanium
Honeycomb structures
Lead
Metals
Phase diagrams
Quantum Hall effect
Spin Hall effect
Topology
First-principles calculation
Quantum Spin hall effect
Spin-orbit couplings
Topological bands
Topological characteristics
Topological insulators
Topological phase
Two Dimensional (2 D)
Tensile strain
Huang, Z.-Q
Hsu, C.-H
Chuang, F.-C
Liu, Y.-T
Lin, H
Su, W.-S
Ozolins, V
Bansil, A
Strain driven topological phase transitions in atomically thin films of group IV and v elements in the honeycomb structures
description 10.1088/1367-2630/16/10/105018
author2 CENTRE FOR ADVANCED 2D MATERIALS
author_facet CENTRE FOR ADVANCED 2D MATERIALS
Huang, Z.-Q
Hsu, C.-H
Chuang, F.-C
Liu, Y.-T
Lin, H
Su, W.-S
Ozolins, V
Bansil, A
format Article
author Huang, Z.-Q
Hsu, C.-H
Chuang, F.-C
Liu, Y.-T
Lin, H
Su, W.-S
Ozolins, V
Bansil, A
author_sort Huang, Z.-Q
title Strain driven topological phase transitions in atomically thin films of group IV and v elements in the honeycomb structures
title_short Strain driven topological phase transitions in atomically thin films of group IV and v elements in the honeycomb structures
title_full Strain driven topological phase transitions in atomically thin films of group IV and v elements in the honeycomb structures
title_fullStr Strain driven topological phase transitions in atomically thin films of group IV and v elements in the honeycomb structures
title_full_unstemmed Strain driven topological phase transitions in atomically thin films of group IV and v elements in the honeycomb structures
title_sort strain driven topological phase transitions in atomically thin films of group iv and v elements in the honeycomb structures
publisher Institute of Physics Publishing
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/175301
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