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Tunable Multiresonant Microcavity Exciton-Polaritons in Colloidal Quantum Wells
Journal article   Peer reviewed

Tunable Multiresonant Microcavity Exciton-Polaritons in Colloidal Quantum Wells

Nhung Vu Cam, Md Abdur Rahman, Syed Akhil, Emek Goksu Durmusoglu, Thi Thu Ha Do, Pedro Ludwig Hernandez-Martinez, Corentin Dabard, Deepshikha Arora, Siam Uddin, Golnoush Zamiri, …
Nano letters, Vol.25(15), pp.6109-6116
16/04/2025
PMID: 40082251

Abstract

Chemistry Chemistry, Multidisciplinary Chemistry, Physical Materials Science Materials Science, Multidisciplinary Nanoscience & Nanotechnology Physical Sciences Physics Physics, Applied Physics, Condensed Matter Science & Technology Science & Technology - Other Topics Technology
Optical microcavities are widely used to confine photons for exciton-polariton formation. However, their compact design often imposes limitations on spatial freedom, particularly in controlling the cavity length with the nanometer precision required for effective coupling with excitons. Existing methods for tuning resonances by integrating cavities with dynamic structures often lack sufficient resolution or a complex operation. Here, we introduce a multiresonant microcavity array that provides a full spectral selection of cavity resonances with a sub-5 nm cavity length variation. We employed this platform to investigate room-temperature polariton formation using gradient core-crown colloidal quantum wells that host highly stable excitons. The strong coupling system exhibits longevity of Rabi oscillations with a quality factor of Q R = 3.3 and a large Rabi splitting exceeding twice the thermal losses. Notably, we achieved control of the polariton mixed properties across the cavity arrays on a single substrate. This platform is promising for the development of on-chip polaritonic devices.

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