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Dynamical Conductivity and Zero-Mode Anomaly in Honeycomb Lattices

Journal of the Physical Society of Japan · 2002 · Vol. 71(5) · pp. 1318–1324
Tsuneya AndoYisong ZhengHidekatsu Suzuura

Abstract

A topological anomaly present at zero energy is shown to give rise to a peculiar and singular behavior of the dynamic and static conductivity in two-dimensional honeycomb lattices. A calculation in a self-consistent Born approximation reveals that this singular dependence prevails although being somewhat smoothed out even if level broadening effects are taken into account.

Graphene research and applicationsTopological Materials and PhenomenaCarbon Nanotubes in CompositesZero (linguistics)Anomaly (physics)HoneycombConductivityPhysicsCondensed matter physicsZero-point energyZero temperatureStatistical physicsQuantum mechanics

Funding

  • Japan Society for the Promotion of Science
Citations
453
FWCI
2.67
field-weighted impact
References
11
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90%
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References
Berry's Phase and Absence of Back Scattering in Carbon Nanotubes
Journal of the Physical Society of Japan · 1998 · 744 citations
Helical microtubules of graphitic carbon
Nature · 1991 · 42,584 citations
Impurity Scattering in Carbon Nanotubes – Absence of Back Scattering –
Journal of the Physical Society of Japan · 1998 · 471 citations
Quantal phase factors accompanying adiabatic changes
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1984 · 8,906 citations
Quantum Transport in Two-Dimensional Graphite System
Journal of the Physical Society of Japan · 1998 · 641 citations
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