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Superlocalization of Excitons in Carbon Nanotubes at Cryogenic Temperature

  • C. Raynaud
  • , T. Claude
  • , A. Borel
  • , M. R. Amara
  • , A. Graf
  • , J. Zaumseil
  • , J. S. Lauret
  • , Y. Chassagneux
  • , C. Voisin
  • Laboratoire de Probabilités et Modèles Aléatoires
  • University of Heidelberg
  • ENS Paris-Saclay

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

13 Citations (Scopus)

Résumé

At cryogenic temperature and at the single emitter level, the optical properties of single-wall carbon nanotubes depart drastically from that of a one-dimensional (1D) object. In fact, the (usually unintentional) localization of excitons in local potential wells leads to nearly 0D behaviors such as photon antibunching, spectral diffusion, inhomogeneous broadening, etc. Here, we present a hyperspectral imaging of this spontaneous exciton localization effect at the single nanotube level using a super-resolved optical microscopy approach. We report on the statistical distribution of the trap localization, depth, and width. We use a quasi-resonant photoluminescence excitation approach to probe the confined quantum states. Numerical simulations of the quantum states and exciton diffusion show that the excitonic states are deeply modified by the interface disorder inducing a remarkable discretization of the excitonic absorption spectrum and a quenching of the free 1D exciton absorption.

langue originaleAnglais
Pages (de - à)7210-7216
Nombre de pages7
journalNano Letters
Volume19
Numéro de publication10
Les DOIs
étatPublié - 9 oct. 2019
Modification externeOui

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