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Site-Control of InAs/GaAs Quantum Dots with Indium-Assisted Deoxidation. | LitMetric

Site-Control of InAs/GaAs Quantum Dots with Indium-Assisted Deoxidation.

Materials (Basel)

IOM CNR, Laboratorio TASC, Area Science Park Basovizza, S.S. 14 Km 163.5, 34149 Trieste, Italy.

Published: March 2016

AI Article Synopsis

  • The study focuses on improving the growth of InAs quantum dots on GaAs substrates by using periodic nanohole arrays to encourage precise dot placement.
  • The main challenge is that lithographically-defined holes are larger than the dots, causing multiple dots to nucleate in a single hole, but a new method using indium beams has been developed to prevent this issue.
  • This indium-assisted deoxidation technique not only maintains a cleaner and smoother GaAs surface but also leads to better optical quality in the quantum dots, as indicated by reduced inhomogeneous broadening in low temperature photoluminescence measurements.

Article Abstract

Site-controlled epitaxial growth of InAs quantum dots on GaAs substrates patterned with periodic nanohole arrays relies on the deterministic nucleation of dots into the holes. In the ideal situation, each hole should be occupied exactly by one single dot, with no nucleation onto planar areas. However, the single-dot occupancy per hole is often made difficult by the fact that lithographically-defined holes are generally much larger than the dots, thus providing several nucleation sites per hole. In addition, deposition of a thin GaAs buffer before the dots tends to further widen the holes in the [110] direction. We have explored a method of native surface oxide removal by using indium beams, which effectively prevents hole elongation along [110] and greatly helps single-dot occupancy per hole. Furthermore, as compared to Ga-assisted deoxidation, In-assisted deoxidation is efficient in completely removing surface contaminants, and any excess In can be easily re-desorbed thermally, thus leaving a clean, smooth GaAs surface. Low temperature photoluminescence showed that inhomogeneous broadening is substantially reduced for QDs grown on In-deoxidized patterns, with respect to planar self-assembled dots.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5456728PMC
http://dx.doi.org/10.3390/ma9030208DOI Listing

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