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Tuning of polarization sensitivity in closely stacked trilayer InAs/GaAs quantum dots induced by overgrowth dynamics

Academic Article
Publication Date:
2014
abstract:
Tailoring of electronic and optical properties of self-assembled InAs quantum dots (QDs) is a critical limit for the design of several QD-based optoelectronic devices operating in the telecom frequency range. We describe how fine control of the strain-induced surface kinetics during the growth of vertically stacked multiple layers of QDs allows for the engineering of their self-organization process. Most noticeably, this study shows that the underlying strain field induced along a QD stack can be modulated and controlled by time-dependent intermixing and segregation effects occurring after capping with a GaAs spacer. This leads to a drastic increase of the TM/TE polarization ratio of emitted light, not accessible from conventional growth parameters. Our detailed experimental measurements, supported by comprehensive multi-million atom simulations of strain, electronic and optical properties, provide in-depth analysis of the grown QD samples allowing us to give a clear picture of the atomic scale phenomena affecting the proposed growth dynamics and consequent QD polarization response. © 2014 IOP Publishing Ltd.
Iris type:
01.01 Articolo in rivista
Keywords:
electronic properties; optoelectronics; polarization response; quantum dot stacks; strain; TM/TE ratio
List of contributors:
Tasco, Vittorianna; Passaseo, ADRIANA GRAZIA
Authors of the University:
PASSASEO ADRIANA GRAZIA
TASCO VITTORIANNA
Handle:
https://iris.cnr.it/handle/20.500.14243/247081
Published in:
NANOTECHNOLOGY (BRISTOL. PRINT)
Journal
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http://www.scopus.com/inward/record.url?eid=2-s2.0-84892154124&partnerID=q2rCbXpz
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