Spherical topological insulator

Physical Review B Volume 86 Issue 23 Page 235119- published_at 2012
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Title ( eng )
Spherical topological insulator
Creator
Fukui Takahiro
Source Title
Physical Review B
Volume 86
Issue 23
Start Page 235119
Abstract
The electronic spectrum on the spherical surface of a topological insulator reflects an active property of the helical surface state that stems from a constraint on its spin on a curved surface. The induced spin connection can be interpreted as an effective vector potential associated with a fictitious magnetic monopole induced at the center of the sphere. The strength of the induced magnetic monopole is found to be g=±2π, being the smallest finite (absolute) value compatible with the Dirac quantization condition. We have established an explicit correspondence between the bulk Hamiltonian and the effective Dirac operator on the curved spherical surface. An explicit construction of the surface spinor wave functions implies a rich spin texture possibly realized on the surface of topological insulator nanoparticles. The electronic spectrum inferred by the obtained effective surface Dirac theory, confirmed also by the bulk tight-binding calculation, suggests a specific photoabsorption/emission spectrum of such nanoparticles.
NDC
Physics [ 420 ]
Language
eng
Resource Type journal article
Publisher
American Physical Society
Date of Issued 2012
Rights
(c) 2012 American Physical Society
Publish Type Version of Record
Access Rights open access
Source Identifier
[ISSN] 1098-0121
[DOI] 10.1103/PhysRevB.86.235119
[NCID] AA11187113
[URI] http://link.aps.org/doi/10.1103/PhysRevB.86.235119