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Direct topological insulator transitions in three dimensions are destabilized by nonperturbative effects of disorder
Yixing Fu
, Justin H. Wilson
,
David A. Huse
, J. H. Pixley
Physics
Princeton Materials Institute
Princeton Quantum Initiative
Research output
:
Contribution to journal
›
Article
›
peer-review
2
Scopus citations
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Dive into the research topics of 'Direct topological insulator transitions in three dimensions are destabilized by nonperturbative effects of disorder'. Together they form a unique fingerprint.
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Keyphrases
Topological Insulator
100%
Disorder Effects
100%
Dirac Semimetal
100%
Insulator Transition
100%
Nonperturbative Effects
100%
Three-dimensional (3D)
50%
Phase Diagram
50%
Density of States
50%
Wave Function
50%
Rare Regions
50%
Non-interacting
50%
Doped Topological Insulators
50%
State Function
50%
Numerical Data
50%
Topological Phase
50%
Metal Phase
50%
Engineering
Diffusive
100%
Critical Point
100%
Numerical Data
100%
Metal Phase
100%
Finite Extent
100%
Physics
Topological Insulator
100%
Metalloid
66%
Wave Function
33%
Density of States
33%
Phase Diagrams
33%
Chemistry
Metalloid
100%
Wave Function
50%
Density of State
50%
Phase Diagrams
50%
Material Science
Semimetals
100%
Density
50%