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- W2108350566 abstract "hexagons of the structure with respect to the nanotube axis. SWNT’s also exhibit remarkable Raman spectra, which can provide a wealth of information about the one dimensional (1-D) electronic density of states through a strong resonant coupling between the incident and scattered photons and the electronic transitions between the van Hove singularities in the 1-D density of states in the valence and conduction bands. Through the wide range of laser frequencies available in the Raman Laboratory of the Spectroscopy Laboratory, it has been possible to carry out resonance Raman experiments at many laser excitation energies, thereby allowing study of many novel features. Figure 2 shows the Raman spectrum of a carbon nanotube sample over a wide frequency range. The strong feature at ~155 cm -1 is associated with the radial breathing mode, in which every carbon atom vibrates in phase in the radial direction. Since the radial breathing frequency is proportional to" @default.
- W2108350566 created "2016-06-24" @default.
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- W2108350566 date "2000-01-01" @default.
- W2108350566 modified "2023-09-24" @default.
- W2108350566 title "Optical Spectroscopy For Detection Of Alzheimer’s Disease" @default.
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- W2108350566 doi "https://doi.org/10.1364/bosd.2000.sud1" @default.
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