Resolving the Emission Transition Dipole Moments of Single Doubly Excited Seeded Nanorods via Heralded Defocused Imaging

Daniel Amgar, Gur Lubin, Gaoling Yang, Freddy T. Rabouw, Dan Oron*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Semiconductor nanocrystal emission polarization is a crucial probe of nanocrystal physics and an essential factor for nanocrystal-based technologies. While the transition dipole moment for the lowest excited state to ground state transition is well characterized, the dipole moment of higher multiexcitonic transitions is inaccessible via most spectroscopy techniques. Here, we realize direct characterization of the doubly excited-state relaxation transition dipole by heralded defocused imaging. Defocused imaging maps the dipole emission pattern onto a fast single-photon avalanche diode detector array, allowing the postselection of photon pairs emitted from the biexciton-exciton emission cascade and resolving the differences in transition dipole moments. Type-I1/2 seeded nanorods exhibit higher anisotropy of the biexciton-to-exciton transition compared to the exciton-to-ground state transition. In contrast, type-II seeded nanorods display a reduction of biexciton emission anisotropy. These findings are rationalized in terms of an interplay between the transient dynamics of the refractive index and the excitonic fine structure.

Original languageEnglish
Pages (from-to)5417-5423
Number of pages7
JournalNano Letters
Volume23
Issue number12
DOIs
Publication statusPublished - 28 Jun 2023

Keywords

  • Heralded Spectroscopy
  • SPAD arrays
  • biexciton
  • emission anisotropy
  • emission transition dipole
  • single-particle spectroscopy

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