Narrow-linewidth exciton-polariton laser

Author:

Fabricante Bianca Rae1,Król Mateusz1ORCID,Wurdack Matthias1,Pieczarka Maciej2ORCID,Steger Mark3,Snoke David W.3,West Kenneth4,Pfeiffer Loren N.4,Truscott Andrew G.1,Ostrovskaya Elena A.1ORCID,Estrecho Eliezer1ORCID

Affiliation:

1. The Australian National University

2. Wrocław University of Science and Technology

3. University of Pittsburgh

4. Princeton University

Abstract

Exciton-polariton lasers are a promising source of coherent light for low-energy applications due to their low-threshold operation. However, a detailed experimental study of their spectral purity, which directly affects their coherence properties, is still missing. Here, we present a high-resolution spectroscopic investigation of the energy and linewidth of an exciton-polariton laser in the single-mode regime, which derives its coherent emission from an optically pumped and confined exciton-polariton condensate. We report an ultra-narrow linewidth of 56 MHz or 0.24 µeV, corresponding to a coherence time of 5.7 ns. The narrow linewidth is consistently achieved by using an exciton-polariton condensate with a high photonic content confined in an optically induced trap. Contrary to previous studies, we show that the excitonic reservoir created by the pump and responsible for creating the trap does not strongly affect the emission linewidth as long as the condensate is trapped and the pump power is well above the condensation (lasing) threshold. The long coherence time of the exciton-polariton system uncovered here opens up opportunities for manipulating its macroscopic quantum state, which is essential for applications in classical and quantum computing.

Funder

Australian Research Council

Narodowe Centrum Nauki

Publisher

Optica Publishing Group

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