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Excitation lifetime extracted from electron–photon (EELS-CL) nanosecond-scale temporal coincidences

MetadataDetails
Publication Date2023-11-27
JournalApplied Physics Letters
AuthorsNadezda Varkentina, Yves Auad, Steffi Y. Woo, Florian Castioni, Jean‐Denis Blazit
InstitutionsCentre National de la Recherche Scientifique, Université Paris-Saclay
Citations6

Electron-photon temporal correlations in electron energy loss spectroscopy (EELS) and cathodoluminescence (CL) spectroscopies have recently been used to measure the relative quantum efficiency of materials. This combined spectroscopy, named cathodoluminescence excitation (CLE) spectroscopy, allows for the identification of excitation and decay channels, which are hidden in average measurements. Here, we demonstrate that CLE can also be used to measure excitations’ decay time. In addition, the decay time as a function of the excitation energy is measured, as the energy for each electron-photon pair is probed. We used two well-known insulating materials to characterize this technique, nanodiamonds with NV0 defects and hexagonal boron nitride (h-BN) with 4.1 eV defects. Both also exhibit marked transition radiations, whose extremely short decay times can be used to characterize the instrumental response function. It is found to be typically 2 ns, in agreement with the expected limit of the EELS detector temporal resolution. The measured lifetimes of NV0 centers in diamond nanoparticles (20-40 ns) and 4.1 eV defect in h-BN flakes (<2 ns) match those reported previously.

  1. 2015 - Observation of excitonic Rydberg states in monolayer MoS2 and WS2 by photoluminescence excitation spectroscopy [Crossref]
  2. 2010 - Quantum efficiency of energy transfer in noncovalent carbon nanotube/porphyrin compounds [Crossref]
  3. 2012 - Optimum photoluminescence excitation and recharging cycle of single nitrogen-vacancy centers in ultrapure diamond [Crossref]
  4. 2008 - Defect-related photoluminescence of hexagonal boron nitride [Crossref]
  5. 1992 - Photoluminescence from a single GaAs/AlGaAs quantum dot [Crossref]
  6. 2010 - Optical excitations in electron microscopy [Crossref]
  7. 2015 - Unveiling nanometer scale extinction and scattering phenomena through combined electron energy loss spectroscopy and cathodoluminescence measurements [Crossref]
  8. 2019 - Electron-beam spectroscopy for nanophotonics [Crossref]
  9. 2013 - Cathodoluminescence in a scanning transmission electron microscope: A nanometer-scale counterpart of photoluminescence for the study of II-VI quantum dots [Crossref]
  10. 2005 - Probing carrier dynamics in nanostructures by picosecond cathodoluminescence [Crossref]