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Phase-noise protection in quantum-enhanced differential interferometry

Academic Article
Publication Date:
2014
abstract:
Differential interferometry (DI) with two coupled sensors is a most powerful approach for precision measurements in the presence of strong phase noise. However, DI has been studied and implemented only with classical resources. Here we generalize the theory of differential interferometry to the case of entangled probe states. We demonstrate that, for perfectly correlated interferometers and in the presence of arbitrary large phase noise, sub-shot noise sensitivities-up to the Heisenberg limit-are still possible with a special class of entangled states in the ideal lossless scenario. These states belong to a decoherence free subspace where entanglement is passively protected. Our work paves the way to the full exploitation of entanglement in precision measurements.
Iris type:
01.01 Articolo in rivista
Keywords:
nonclassical interferometry; atom interferometry; quantum noise
List of contributors:
Landini, Manuele; Fattori, Marco; Pezze', Luca; Smerzi, Augusto
Authors of the University:
PEZZE' LUCA
SMERZI AUGUSTO
Handle:
https://iris.cnr.it/handle/20.500.14243/284530
Published in:
NEW JOURNAL OF PHYSICS
Journal
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