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Nanostructured GaAs/AlGaAs Waveguide for Low-Density Polariton Condensation from a Bound State in the Continuum

Academic Article
Publication Date:
2022
abstract:
Exciton-polaritons are hybrid light-matter states that arise from strong coupling between an exciton resonance and a photonic cavity mode. As bosonic excitations, they can undergo a phase transition to a condensed state that can emit coherent light without a population inversion. This aspect makes them good candidates for thresholdless lasers, yet short exciton-polariton lifetime has made it difficult to achieve condensation at very low power densities. In this sense, long-lived symmetry-protected states are excellent candidates to overcome the limitations that arise from the finite mirror reflectivity of monolithic microcavities. In this work we use a photonic symmetry-protected bound state in the continuum coupled to an excitonic resonance to achieve state-of-the-art polariton condensation threshold in a GaAs/(Al,Ga)As waveguide. Most important, we show the influence of fabrication control and how surface passivation via atomic layer deposition provides a way to reduce exciton quenching at the grating sidewalls.
Iris type:
1.1 Articolo in rivista
List of contributors:
Riminucci, F.; Ardizzone, V.; Francaviglia, L.; Lorenzon, M.; Stavrakas, C.; Dhuey, S.; Schwartzberg, A.; Zanotti, S.; Gerace, D.; Baldwin, K.; Pfeiffer, L. N.; Gigli, G.; Ogletree, D. F.; Weber-Bargioni, A.; Cabrini, S.; Sanvitto, D.
Authors of the University:
GERACE DARIO
Handle:
https://iris.unipv.it/handle/11571/1477795
Published in:
PHYSICAL REVIEW APPLIED
Journal
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URL

https://journals.aps.org/prapplied/abstract/10.1103/PhysRevApplied.18.024039
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