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Portrait of Arkady Yartsev. Photo: Kennet Ruona

Arkady Yartsev

Researcher

Portrait of Arkady Yartsev. Photo: Kennet Ruona

Carrier Recombination Processes in Gallium Indium Phosphide Nanowires

Author

  • Wei Zhang
  • Xulu Zeng
  • Xiaojun Su
  • Xianshao Zou
  • Pierre Adrien Mante
  • Magnus T. Borgström
  • Arkady Yartsev

Summary, in English

Understanding of recombination and photoconductivity dynamics of photogenerated charge carriers in GaxIn1-xP NWs is essential for their optoelectronic applications. In this letter, we have studied a series of GaxIn1-xP NWs with varied Ga composition. Time-resolved photoinduced luminescence, femtosecond transient absorption, and time-resolved THz transmission measurements were performed to assess radiative and nonradiative recombination and photoconductivity dynamics of photogenerated charges in the NWs. We conclude that radiative recombination dynamics is limited by hole trapping, whereas electrons are highly mobile until they recombine nonradiatively. We also resolve gradual decrease of mobility of photogenerated electrons assigned to electron trapping and detrapping in a distribution of trap states. We identify that the nonradiative recombination of charges is much slower than the decay of the photoluminescence signal. Further, we conclude that trapping of both electrons and holes as well as nonradiative recombination become faster with increasing Ga composition in GaxIn1-xP NWs. We have estimated early time electron mobility in GaxIn1-xP NWs and found it to be strongly dependent on Ga composition due to the contribution of electrons in the X-valley.

Department/s

  • NanoLund: Center for Nanoscience
  • Solid State Physics

Publishing year

2017-07-12

Language

English

Pages

4248-4254

Publication/Series

Nano Letters

Volume

17

Issue

7

Document type

Journal article

Publisher

The American Chemical Society (ACS)

Topic

  • Atom and Molecular Physics and Optics
  • Condensed Matter Physics

Keywords

  • carrier recombination
  • Gallium indium phosphide
  • mobility
  • nanowire
  • photoconductivity

Status

Published

ISBN/ISSN/Other

  • ISSN: 1530-6984