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Substrate-modified scattering properties of silicon nanostructures for solar energy applications

  • N. T. Fofang
  • , T. S. Luk
  • , M. Okandan
  • , G. N. Nielson
  • , I. Brener

Research output: Contribution to journalArticlepeer-review

29 Scopus citations

Abstract

Enhanced light trapping is an attractive technique for improving the efficiency of thin film silicon solar cells. In this paper, we use FDTD simulations to study the scattering properties of silicon nanostructures on a silicon substrate and their application as enhanced light trappers. We find that the scattered spectrum and angular scattering distribution strongly depend on the excitation direction, that is, from air to substrate or from substrate to air. At the dipole resonance wavelength the scattering angles tend to be very narrow compared to those of silicon nanostructures in the absence of a substrate. Based on these properties, we propose a new thin film silicon solar cell design incorporating silicon nanostructures on both the front and back surfaces for enhanced light trapping. © 2013 Optical Society of America.
Original languageEnglish
Pages (from-to)4774-4782
Number of pages9
JournalOptics Express
Volume21
Issue number4
DOIs
StatePublished - Feb 25 2013
Externally publishedYes

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