---
res:
  bibo_abstract:
  - 'Coherent phonons can greatly vary light–matter interaction in semiconductor nanostructures
    placed inside an optical resonator on a picosecond time scale. For an ensemble
    of quantum dots (QDs) as active laser medium, phonons are able to induce a large
    enhancement or attenuation of the emission intensity, as has been recently demonstrated.
    The physics of this coupled phonon–exciton–light system consists of various effects,
    which in the experiment typically cannot be clearly separated, in particular,
    due to the complicated sample structure a rather complex strain pulse impinges
    on the QD ensemble. Here we present a comprehensive theoretical study how the
    laser emission is affected by phonon pulses of various shapes as well as by ensembles
    with different spectral distributions of the QDs. This gives insight into the
    fundamental interaction dynamics of the coupled phonon–exciton–light system, while
    it allows us to clearly discriminate between two prominent effects: the adiabatic
    shifting of the ensemble and the shaking effect. This paves the way to a tailored
    laser emission controlled by phonons.@eng'
  bibo_authorlist:
  - foaf_Person:
      foaf_givenName: Daniel
      foaf_name: Wigger, Daniel
      foaf_surname: Wigger
  - foaf_Person:
      foaf_givenName: Thomas
      foaf_name: Czerniuk, Thomas
      foaf_surname: Czerniuk
  - foaf_Person:
      foaf_givenName: Doris E
      foaf_name: Reiter, Doris E
      foaf_surname: Reiter
  - foaf_Person:
      foaf_givenName: Manfred
      foaf_name: Bayer, Manfred
      foaf_surname: Bayer
  - foaf_Person:
      foaf_givenName: Tilmann
      foaf_name: Kuhn, Tilmann
      foaf_surname: Kuhn
  bibo_doi: 10.1088/1367-2630/aa78bf
  bibo_issue: '7'
  bibo_volume: 19
  dct_date: 2017^xs_gYear
  dct_isPartOf:
  - http://id.crossref.org/issn/1367-2630
  dct_language: eng
  dct_publisher: IOP Publishing@
  dct_title: Systematic study of the influence of coherent phonon wave packets on
    the lasing properties of a quantum dot ensemble@
...
