Deutsch
 
Hilfe Datenschutzhinweis Impressum
  DetailsucheBrowse

Datensatz

DATENSATZ AKTIONENEXPORT

Freigegeben

Zeitschriftenartikel

Bulk-boundary correspondence from the intercellular Zak phase

MPG-Autoren
/persons/resource/persons195722

Rhim,  Jun-Won
Max Planck Institute for the Physics of Complex Systems, Max Planck Society;

/persons/resource/persons191698

Behrends,  Jan
Max Planck Institute for the Physics of Complex Systems, Max Planck Society;

/persons/resource/persons146160

Bardarson,  Jens H.
Max Planck Institute for the Physics of Complex Systems, Max Planck Society;

Volltexte (beschränkter Zugriff)
Für Ihren IP-Bereich sind aktuell keine Volltexte freigegeben.
Volltexte (frei zugänglich)
Es sind keine frei zugänglichen Volltexte in PuRe verfügbar
Ergänzendes Material (frei zugänglich)
Es sind keine frei zugänglichen Ergänzenden Materialien verfügbar
Zitation

Rhim, J.-W., Behrends, J., & Bardarson, J. H. (2017). Bulk-boundary correspondence from the intercellular Zak phase. Physical Review B, 95(3): 035421. doi:10.1103/PhysRevB.95.035421.


Zitierlink: https://hdl.handle.net/11858/00-001M-0000-002D-ADE1-7
Zusammenfassung
The Zak phase gamma, the generalization of the Berry phase to Bloch wave functions in solids, is often used to characterize inversion-symmetric one-dimensional (1D) topological insulators. Due to its dependence on the real-space origin and unit cell, however, there is an ambiguity in its use in a bulk-boundary correspondence. Here, we extract an origin-independent part of gamma, the so-called intercellular Zak phase gamma(inter), and show that it is a bulk quantity that unambiguously predicts the number of surface modes. Specifically, a neutral finite 1D tight-binding system has n(s) = gamma(inter)/pi (mod 2) in-gap surface modes below the Fermi level if there exists a commensurate inversion-symmetric bulk unit cell. We demonstrate this in two steps: First, we verify that +/- e gamma(inter)/2 pi (mod e) equals the extra charge accumulation in the surface region in a terminated system of a translationally invariant 1D insulator, while the remnant part of gamma, the intracellular Zak phase gamma(intra), corresponds to the electronic part of the bulk's unit-cell dipole moment. Second, we show that the extra charge accumulation is related to the number of surface modes when the unit cell is inversion symmetric. We study several tight-binding models to quantitatively check both the relation between the extra charge accumulation and the intercellular Zak phase, and the bulk-boundary correspondence using the intercellular Zak phase.