Title of article
Dephasing processes in a single semiconductor quantum dot
Author/Authors
Cassabois، نويسنده , , Guillaume and Ferreira، نويسنده , , Robson، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
10
From page
830
To page
839
Abstract
We discuss the decoherence dynamics in a single semiconductor quantum dot and analyze two dephasing mechanisms. In the first part of the review, we examine the intrinsic source of dephasing provided by the coupling to acoustic phonons. We show that the non-perturbative reaction of the lattice to the interband optical transition results in a composite optical spectrum with a central zero-phonon line and lateral side-bands. In fact, these acoustic phonon side-bands completely dominate the quantum dot optical response at room temperature. In the second part of the article, we focus on the extrinsic dephasing mechanism of spectral diffusion that determines the quantum dot decoherence at low temperatures. We interpret the variations of both width and shape of the zero-phonon line as due to the fluctuating electrostatic environment. In particular, we demonstrate the existence of a motional narrowing regime in the limit of low incident power or low temperature, thus revealing an unconventional phenomenology compared to nuclear magnetic resonance. To cite this article: G. Cassabois, R. Ferreira, C. R. Physique 9 (2008).
Keywords
Decoherence , Spectral diffusion , Acoustic phonon , Motional narrowing , Décohérence , Phonon acoustique , Diffusion spectrale , Rétrécissement par le mouvement
Journal title
Comptes Rendus Physique
Serial Year
2008
Journal title
Comptes Rendus Physique
Record number
2284009
Link To Document