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Entanglement-assisted non-local optical interferometry in a quantum network

delete2026-02-25
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OA
AI
P
Pieter-Jan Stas
Y
Yan-Cheng Wei
M
M. Sirotin
Y
Yan Qi Huan
U
U. Yazlar
F
F. Abdo Arias
E
E. Knyazev
G
Gefen Baranes
B
B. Machielse
S
Samuele Grandi
D
Daniel Riedel
J
J. Borregaard
H
Hongkun Park
M
Marko Lončar
A
A. Suleymanzade
M
Mikhail D. Lukin *
DOI:10.1038/s41586-026-10171-wdelete
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Abstract

Abstract

En 中文
The sensitivity of non-local optical measurements at low light intensities, such as those involved in long-baseline telescope arrays1,2, is limited by fundamental quantum noise and photon losses3. Distributed quantum entanglement has been proposed as a route towards overcoming these limitations and accessing new regimes of non-local optical sensing4–6. Here we demonstrate the use of entangled quantum memories in a quantum network of silicon–vacancy centres in diamond nanocavities7–9 to experimentally perform such non-local phase measurements. Specifically, we combine the generation of event-ready remote quantum entanglement, photon mode erasure that hides the ‘which-path’ information of temporally and spatially separated incoming optical modes and non-local, non-destructive photon heralding enabled by remote entanglement to perform a proof-of-concept entanglement-assisted differential phase measurement of weak incident light between two spatially separate stations. Demonstrating successful operation of the remote phase sensing protocol with a fibre link baseline up to 1.55 km, our results provide an opportunity for a new class of quantum-enhanced optical imaging methods with potential applications ranging from long-baseline interferometry and astronomy to microscopy10,11. Entangled quantum memories are used in a quantum network of silicon–vacancy centres in diamond nanocavities to experimentally perform non-local phase measurements.
Keywords:
Quantum information
Quantum metrology
Quantum optics
Science
Humanities and Social Sciences
multidisciplinary

Journal

Nature cover
Nature
IF:
48.5
Papers:
1.8W
Citations:
96.5W

Organization

H
Harvard University
Scholars:
26.5W
Papers: 22.0W
Citations: 28.7W
I
IonQ
Scholars:
2
Papers: 2
Citations: 0
B
Barcelona Institute of Science and Technology
Scholars:
567
Papers: 203
Citations: 204
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