Tuesday, November 6, 2012

0911.1330 (I. Wilson-Rae et al.)

Exciton-assisted optomechanics with suspended carbon nanotubes    [PDF]

I. Wilson-Rae, C. Galland, W. Zwerger, A. Imamoglu
We propose a framework for inducing strong optomechanical effects in a suspended carbon nanotube based on deformation potential exciton-phonon coupling. The excitons are confined using an inhomogeneous axial electric field which generates optically active quantum dots with a level spacing in the milli-electronvolt range and a characteristic size in the 10-nanometer range. A transverse field induces a tunable parametric coupling between the quantum dot and the flexural modes of the nanotube mediated by electron-phonon interactions. We derive the corresponding excitonic deformation potentials and show that this interaction enables efficient optical ground-state cooling of the fundamental mode and could allow us to realise the strong and ultra-strong coupling regimes of the Jaynes-Cummings and Rabi models.
View original: http://arxiv.org/abs/0911.1330

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