Skip to main navigation Skip to search Skip to main content

Investigating the exciton dynamics in InGaN/GaN core-shell nanorods using time-resolved cathodoluminescence

  • K. Loeto
  • , G. Kusch
  • , O. Brandt
  • , P. M. Coulon
  • , S. Hammersley
  • , J. Lähnemann
  • , I. Girgel
  • , S. M. Fairclough
  • , M. Sarkar
  • , P. A. Shields
  • , R. A. Oliver
  • University of Cambridge
  • Leibniz Institute for Zoo and Wildlife Research
  • Centre de Recherche sur l'Hétéro-Epitaxie et ses Applications
  • Porotech
  • Department of Materials Science and Metallurgy

Research output: Contribution to journalArticlepeer-review

2   Link opens in a new tab Citations (SciVal)

Abstract

This study examines the exciton dynamics in InGaN/GaN core-shell nanorods using time-resolved cathodoluminescence (TRCL), which provides nanometer-scale lateral spatial and tens of picoseconds temporal resolutions. The focus is on thick (>20 nm) InGaN layers on the non-polar, semi-polar and polar InGaN facets, which are accessible for study due to the unique nanorod geometry. Spectrally integrated TRCL decay transients reveal distinct recombination behaviours across these facets, indicating varied exciton lifetimes. By extracting fast and slow lifetime components and observing their temperature trends along with those of the integrated and peak intensity, the differences in behaviour were linked to variations in point defect density and the degree and density of localisation centres in the different regions. Further analysis shows that the non-polar and polar regions demonstrate increasing lifetimes with decreasing emission energy, attributed to an increase in the depth of localisation. This investigation provides insights into the intricate exciton dynamics in InGaN/GaN nanorods, offering valuable information for the design and development of optoelectronic devices.

Original languageEnglish
Article number025703
JournalNanotechnology
Volume36
Issue number2
Early online date23 Oct 2024
DOIs
Publication statusPublished - 13 Jan 2025

Data Availability Statement

All data that support the findings of this study are included within the article (and any supplementary files).

Funding

This research was supported by the EPSRC under Grant Numbers EP/R025193/1 and EP/M015181/1, \u2018Manufacturing nano-engineered III-nitrides\u2019 and Cambridge NanoDTC, EP/S022953/1. Kagiso Loeto would like to acknowledge the Botswana government for his PhD funding. Dr Christian Monachon of Attolight is thanked for his ongoing support of the CL system.

FundersFunder number
Engineering and Physical Sciences Research CouncilEP/M015181/1, EP/R025193/1, EP/S022953/1

Keywords

  • exciton dynamics
  • III-nitrides
  • InGaN
  • light emitting diodes
  • time-resolved cathodoluminescence

ASJC Scopus subject areas

  • Bioengineering
  • General Chemistry
  • General Materials Science
  • Mechanics of Materials
  • Mechanical Engineering
  • Electrical and Electronic Engineering

Fingerprint

Dive into the research topics of 'Investigating the exciton dynamics in InGaN/GaN core-shell nanorods using time-resolved cathodoluminescence'. Together they form a unique fingerprint.

Cite this