Low-frequency noise in metallic single walled carbon nanotubes is shown to be strongly dependent on the Fermi level position and the applied electric field across the nanotube. Resonance-like enhancement observed near optical phonon energy only when the Fermi level lies near the Dirac point is correlated to Raman G-band softening and broadening. The results suggest that the competition between zone-center and zone-boundary phonon scattering is the underlying origin of the large enhancement and resonance-like behavior of 1/f noise
Raman spectra of individual pristine suspended single-walled carbon nanotubes are observed under hig...
We report on the direct visualization of chirality changes in carbon nanotubes by mapping local chan...
The current emission noise of a carbon nanotube quantum dot in the Kondo regime is measured at frequ...
The high-frequency Raman-active phonon modes of metallic single-walled carbon nanotubes (SWCNT) are ...
11 pages, 6 figuresThe high-frequency Raman-active phonon modes of metallic single-walled carbon nan...
Low frequency noise measurements have been performed on a single-wall carbon nanotube connected by T...
We present a detailed study of the vibrational properties of single wall carbon nanotubes (SWNTs). T...
24 pages, 21 figures, submitted to Phys. Rev. BInternational audienceWe present a detailed study of ...
The longitudinal optical phonon of metallic nanotubes shifts by 23 cm−1 to lower energies when the n...
We show that the Raman frequency associated with the vibrational mode at 1,580 cm21 (the G mode) in ...
103 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.Chemical and electrical prope...
UnrestrictedOne-dimensional materials exhibit striking, unique phenomena that are not found in two o...
Carbon nanotubes (CNTs) provide an ideal medium for testing the behavior of one-dimensional electron...
We report on the low-frequency electronic noise properties of individual multi-walled carbon nanotub...
Raman spectra and electrical conductance of individual, pristine, suspended, metallic single-walled ...
Raman spectra of individual pristine suspended single-walled carbon nanotubes are observed under hig...
We report on the direct visualization of chirality changes in carbon nanotubes by mapping local chan...
The current emission noise of a carbon nanotube quantum dot in the Kondo regime is measured at frequ...
The high-frequency Raman-active phonon modes of metallic single-walled carbon nanotubes (SWCNT) are ...
11 pages, 6 figuresThe high-frequency Raman-active phonon modes of metallic single-walled carbon nan...
Low frequency noise measurements have been performed on a single-wall carbon nanotube connected by T...
We present a detailed study of the vibrational properties of single wall carbon nanotubes (SWNTs). T...
24 pages, 21 figures, submitted to Phys. Rev. BInternational audienceWe present a detailed study of ...
The longitudinal optical phonon of metallic nanotubes shifts by 23 cm−1 to lower energies when the n...
We show that the Raman frequency associated with the vibrational mode at 1,580 cm21 (the G mode) in ...
103 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.Chemical and electrical prope...
UnrestrictedOne-dimensional materials exhibit striking, unique phenomena that are not found in two o...
Carbon nanotubes (CNTs) provide an ideal medium for testing the behavior of one-dimensional electron...
We report on the low-frequency electronic noise properties of individual multi-walled carbon nanotub...
Raman spectra and electrical conductance of individual, pristine, suspended, metallic single-walled ...
Raman spectra of individual pristine suspended single-walled carbon nanotubes are observed under hig...
We report on the direct visualization of chirality changes in carbon nanotubes by mapping local chan...
The current emission noise of a carbon nanotube quantum dot in the Kondo regime is measured at frequ...