Deterministic and highly indistinguishable single photons in the telecom C-band

N Nico Hauser M Matthias Bayerbach J Jochen Kaupp Y Yorick Reum G Giora Peniakov J Johannes Michl M Martin Kamp T Tobias Huber-Loyola A Andreas T. Pfenning S Sven Höfling S Stefanie Barz

Abstract

Abstract Quantum dots are promising candidates for deterministic single-photon sources, yet achieving high photon indistinguishability at telecom wavelengths remains a critical challenge. Here, we report a quantum dot-based single-photon source operating in the telecommunications C-band that achieves a raw two-photon interference visibility of up to (91.7 ± 0.2)%, thus setting a new benchmark for indistinguishability in this spectral range. The device consists of an indium arsenide (InAs) quantum dot embedded within indium aluminum gallium arsenide (InAlGaAs) and integrated into a circular Bragg grating resonator. We explore multiple optical excitation schemes to optimize coherence and source performance. The demonstration of two-photon interference visibilities exceeding 90% from a quantum-dot emitter in the telecommunications C-band pushes solid-state single-photon sources further towards practical quantum communication and quantum networks.

Article Details

Volume / Issue Vol. 17, Issue 1
Published January 14, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

N

Nico Hauser

M

Matthias Bayerbach

J

Jochen Kaupp

Y

Yorick Reum

G

Giora Peniakov

J

Johannes Michl

M

Martin Kamp

T

Tobias Huber-Loyola

A

Andreas T. Pfenning

S

Sven Höfling

S

Stefanie Barz