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  5. Chirality-dependent G-band Raman intensity of carbon nanotubes

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Article
English
2001

Chirality-dependent G-band Raman intensity of carbon nanotubes

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English
2001
Physical review. B, Condensed matter
Vol 64 (8)
DOI: 10.1103/physrevb.64.085312

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Charles M. Lieber
Charles M. Lieber

Harvard University

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Riichiro Saito
Ado Jório
Jason H. Hafner
+5 more

Abstract

The chirality-dependent G-band Raman intensity of single wall carbon nanotubes is calculated using a nonresonant theory for the Raman tensor. We obtain six or three intense Raman modes, respectively, for chiral or achiral nanotubes, whose relative intensities depend on the chiral angle of the nanotube. The longitudinal and transverse optical phonon modes in two-dimensional graphite become, respectively, transverse and longitudinal optical phonon modes in a one-dimensional nanotube. Confocal micro-Raman measurements of individual single wall carbon nanotubes show chirality-dependent spectra of the G-band intensity, as predicted by this theory.

How to cite this publication

Riichiro Saito, Ado Jório, Jason H. Hafner, Charles M. Lieber, Martin Hunter, Thomas D. McClure, G. Dresselhaus, M. S. Dresselhaus (2001). Chirality-dependent G-band Raman intensity of carbon nanotubes. Physical review. B, Condensed matter, 64(8), DOI: 10.1103/physrevb.64.085312.

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Publication Details

Type

Article

Year

2001

Authors

8

Datasets

0

Total Files

0

Language

English

Journal

Physical review. B, Condensed matter

DOI

10.1103/physrevb.64.085312

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