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Spectral multiplexing of telecom emitters with stable transition frequency

Authors :
Ulanowski, Alexander
Merkel, Benjamin
Reiserer, Andreas
Source :
Science Advances 8, eabo4538 (2022)
Publication Year :
2021

Abstract

In a quantum network, coherent emitters can be entangled over large distances using photonic channels. In solid-state devices, the required efficient light-emitter interface can be implemented by confining the light in nanophotonic structures. However, fluctuating charges and magnetic moments at the nearby interface then lead to spectral instability of the emitters. Here we avoid this limitation when enhancing the photon emission up to 70(12)-fold using a Fabry-Perot resonator with an embedded 19 micrometer thin crystalline membrane, in which we observe around 100 individual erbium emitters. In long-term measurements, they exhibit an exceptional spectral stability of < 0.2 MHz that is limited by the coupling to surrounding nuclear spins. We further implement spectrally multiplexed coherent control and find an optical coherence time of 0.11(1) ms, approaching the lifetime limit of 0.3 ms for the strongest-coupled emitters. Our results constitute an important step towards frequency-multiplexed quantum-network nodes operating directly at a telecommunication wavelength.

Subjects

Subjects :
Quantum Physics
Physics - Optics

Details

Database :
arXiv
Journal :
Science Advances 8, eabo4538 (2022)
Publication Type :
Report
Accession number :
edsarx.2110.09409
Document Type :
Working Paper
Full Text :
https://doi.org/10.1126/sciadv.abo4538