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Trion-Polariton Formation in Single-Walled Carbon Nanotube Microcavities.


ABSTRACT: We demonstrate the formation and tuning of charged trion-polaritons in polymer-sorted (6,5) single-walled carbon nanotubes in a planar metal-clad microcavity at room temperature. The positively charged trion-polaritons were induced by electrochemical doping and characterized by angle-resolved reflectance and photoluminescence spectroscopy. The doping level of the nanotubes within the microcavity was controlled by the applied bias and thus enabled tuning from mainly excitonic to a mixture of exciton and trion transitions. Mode splitting of more than 70 meV around the trion energy and emission from the new lower polariton branch corroborate a transition from exciton-polaritons (neutral) to trion-polaritons (charged). The estimated charge-to-mass ratio of these trion-polaritons is 200 times higher than that of electrons or holes in carbon nanotubes, which has exciting implications for the realization of polaritonic charge transport.

SUBMITTER: Mohl C 

PROVIDER: S-EPMC6019025 | biostudies-literature | 2018 Jun

REPOSITORIES: biostudies-literature

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Trion-Polariton Formation in Single-Walled Carbon Nanotube Microcavities.

Möhl Charles C   Graf Arko A   Berger Felix J FJ   Lüttgens Jan J   Zakharko Yuriy Y   Lumsargis Victoria V   Gather Malte C MC   Zaumseil Jana J  

ACS photonics 20180508 6


We demonstrate the formation and tuning of charged trion-polaritons in polymer-sorted (6,5) single-walled carbon nanotubes in a planar metal-clad microcavity at room temperature. The positively charged trion-polaritons were induced by electrochemical doping and characterized by angle-resolved reflectance and photoluminescence spectroscopy. The doping level of the nanotubes within the microcavity was controlled by the applied bias and thus enabled tuning from mainly excitonic to a mixture of exci  ...[more]

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