Literature DB >> 25115958

Energy transport and coherence properties of acoustic phonons generated by optical excitation of a quantum dot.

D Wigger1, S Lüker, D E Reiter, V M Axt, P Machnikowski, T Kuhn.   

Abstract

The energy transport of acoustic phonons generated by the optical excitation of a quantum dot as well as the coherence properties of these phonons are studied theoretically both for the case of a pulsed excitation and for a continuous wave (CW) excitation switched on instantaneously. For a pulsed excitation, depending on pulse area and pulse duration, a finite number of phonon wave packets is emitted, while for the case of a CW excitation a sequence of wave packets with decreasing amplitude is generated after the excitation has been switched on. We show that the energy flow associated with the generated phonons is partly related to coherent phonon oscillations and partly to incoherent phonon emission. The efficiency of the energy transfer to the phonons and the details of the energy flow depend strongly and in a non-monotonic way on the Rabi frequency exhibiting a resonance behavior. However, in the case of CW excitation it turns out that the total energy transferred to the phonons is directly linked in a monotonic way to the Rabi frequency.

Year:  2014        PMID: 25115958     DOI: 10.1088/0953-8984/26/35/355802

Source DB:  PubMed          Journal:  J Phys Condens Matter        ISSN: 0953-8984            Impact factor:   2.333


  1 in total

1.  Impact of Phonons on Dephasing of Individual Excitons in Deterministic Quantum Dot Microlenses.

Authors:  Tomasz Jakubczyk; Valentin Delmonte; Sarah Fischbach; Daniel Wigger; Doris E Reiter; Quentin Mermillod; Peter Schnauber; Arsenty Kaganskiy; Jan-Hindrik Schulze; André Strittmatter; Sven Rodt; Wolfgang Langbein; Tilmann Kuhn; Stephan Reitzenstein; Jacek Kasprzak
Journal:  ACS Photonics       Date:  2016-11-08       Impact factor: 7.529

  1 in total

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