Superconductivity in an Inhomogeneous Bundle of Metallic and Semiconducting Nanotubes

Author:

Grigorenko Ilya1ORCID,Zakhidov Anvar2

Affiliation:

1. Physics Department, New York City College of Technology, The City University of New York, Brooklyn, NY 11201, USA

2. UTD-NanoTech Institute, The University of Texas at Dallas, Richardson, TX 75083-0688, USA

Abstract

Using Bogoliubov-de Gennes formalism for inhomogeneous systems, we have studied superconducting properties of a bundle of packed carbon nanotubes, making a triangular lattice in the bundle's transverse cross-section. The bundle consists of a mixture of metallic and doped semiconducting nanotubes, which have different critical transition temperatures. We investigate how a spatially averaged superconducting order parameter and the critical transition temperature depend on the fraction of the doped semiconducting carbon nanotubes in the bundle. Our simulations suggest that the superconductivity in the bundle will be suppressed when the fraction of the doped semiconducting carbon nanotubes will be less than 0.5, which is the percolation threshold for a two-dimensional triangular lattice.

Publisher

Hindawi Limited

Subject

General Materials Science

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