Detecting strain wave propagation through quantum dots by pump-probe spectroscopy: A theoretical analysis

Huneke J, Kuhn T, Axt VM

Research article in edited proceedings (conference) | Peer reviewed

Abstract

The influence of strain waves traveling across a quantum dot structure on its optical response is studied for two different situations: First, a strain wave is created by the optical excitation of a single quantum dot near a surface which, after reflection at the surface, reenters the dot; second, a phonon wave packet is emitted by the excitation of a nearby second dot and then travels across the quantum dot. Pump-probe type excitations are simulated for quantum dots in the strong confinement limit. We show that the optical signals allow us to monitor crossing strain waves for both structures in the real-time response as well as in the corresponding pump-probe spectra. In the time-derivative of the phase of the polarization a distinct trace reflects the instantaneous shifts of the transition energy during the passage while in the spectra pronounced oscillations reveal the passage of the strain waves.

Details about the publication

Page range012013null
StatusPublished
Release year2010 (31/12/2010)
Language in which the publication is writtenEnglish
DOI10.1088/1742-6596/210/1/012013
Link to the full texthttp://www.scopus.com/inward/record.url?partnerID=yv4JPVwI&eid=2-s2.0-77950469841&md5=ddefcdcdd1ade141e729f1a0e2d14645

Authors from the University of Münster

Huneke, Jan Frederic
Institute of Solid State Theory
Kuhn, Tilmann
Professur für Festkörpertheorie (Prof. Kuhn)