Authors
Giovanni Miano, Carlo Forestiere, Antonio Maffucci, Sergey A Maksimenko, Gregory Ya Slepyan
Publication date
2009/10/13
Journal
IEEE Transactions on nanotechnology
Volume
10
Issue
1
Pages
135-149
Publisher
IEEE
Description
In carbon nanotubes (CNTs) with large radii, either metallic or semiconducting, several subbands contribute to the electrical conduction, while in metallic nonarmchair nanotubes with small radii the wall curvature induces a large energy gap. In this paper, we propose a model for the signal propagation along single wall CNTs (SWCNTs) of arbitrary chirality, at microwave through terahertz frequencies, which takes into account both these characteristics in a self-consistent way. We first study an SWCNT, disregarding the wall curvature, in the frame of a semiclassical treatment based on the Boltzmann equation in the momentum-independent relaxation time approximation. It allows expressing the longitudinal dynamic conductivity in terms of the number of effective conducting channels. Next, we study the behavior of this number as the nanotube radius varies and its relation with the kinetic inductance and quantum …
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Scholar articles
G Miano, C Forestiere, A Maffucci, SA Maksimenko… - IEEE Transactions on nanotechnology, 2009