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Highly nonlinear trion-polaritons in a monolayer semiconductor

  • R. P.A. Emmanuele
  • , M. Sich
  • , O. Kyriienko
  • , V. Shahnazaryan
  • , F. Withers
  • , A. Catanzaro
  • , P. M. Walker
  • , F. A. Benimetskiy
  • , M. S. Skolnick
  • , A. I. Tartakovskii
  • , I. A. Shelykh
  • , D. N. Krizhanovskii

Research output: Contribution to journalArticlepeer-review

139 Scopus citations

Abstract

Highly nonlinear optical materials with strong effective photon-photon interactions are required for ultrafast and quantum optical signal processing circuitry. Here we report strong Kerr-like nonlinearities by employing efficient optical transitions of charged excitons (trions) observed in semiconducting transition metal dichalcogenides (TMDCs). By hybridising trions in monolayer MoSe2 at low electron densities with a microcavity mode, we realise trion-polaritons exhibiting significant energy shifts at small photon fluxes due to phase space filling. We find the ratio of trion- to neutral exciton–polariton interaction strength is in the range from 10 to 100 in TMDC materials and that trion-polariton nonlinearity is comparable to that in other polariton systems. The results are in good agreement with a theory accounting for the composite nature of excitons and trions and deviation of their statistics from that of ideal bosons and fermions. Our findings open a way to scalable quantum optics applications with TMDCs.

Original languageEnglish
Article number3589
JournalNature Communications
Volume11
Issue number1
DOIs
StatePublished - Dec 1 2020
Externally publishedYes

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