activity
20092024
most citedPlasmon enhanced Raman scattering effect for an atom near a carbon nanotube

11 citations · 11 across the 2 of their papers we have counts for

collaborators

8 papers

physics.optics2024

Electron Confinement-Induced Plasmonic Breakdown in Metals

Prasanna Das, Sourav Rudra, Dheemahi Rao +7

Plasmon resonance in metals represents the collective oscillation of the free electron gas density and enables enhanced light-matter interactions in nanoscale dimensions. Tradition…

cond-mat.mes-hall2014★ 11 cited

Plasmon enhanced Raman scattering effect for an atom near a carbon nanotube

I. V. Bondarev

Quantum electrodynamics theory of the resonance Raman scattering is developed for an atom in a close proximity to a carbon nanotube. The theory predicts a dramatic enhancement of t…

cond-mat.mes-hall2013

Possibility for exciton Bose-Einstein condensation in carbon nanotubes

I. V. Bondarev, A. V. Meliksetyan

We demonstrate a possibility for exciton Bose-Einstein condensation in individual small-diameter (~1-2 nm) semiconducting carbon nanotubes. The effect occurs under the exciton-inte…

cond-mat.mes-hall2012

Temperature dependent graphene suspension due to thermal Casimir interaction

Anh D. Phan, Lilia M. Woods, D. Drosdoff +2

Thermal effects contributing to the Casimir interaction between objects are usually small at room temperature and they are difficult to separate from quantum mechanical contributio…

cond-mat.mes-hall2012

Effects of Spatial Dispersion on the Casimir Force between Graphene Sheets

D. Drosdoff, A. D. Phan, L. M. Woods +2

The Casimir force between graphene sheets is investigated with emphasis on the effect from spatial dispersion using a combination of factors, such as a nonzero chemical potential a…

cond-mat.mes-hall2011

Single wall carbon nanotubes as coherent plasmon generators

I. V. Bondarev

The possibility of low-energy surface plasmon amplification by optically excited excitons in small-diameter single wall carbon nanotubes is theoretically demonstrated. The nonradia…