We optimize two-mode entangled number states of light in the presence of loss in order to maximize the extraction of the available phase information in an interferometer. Our approach optimizes over the entire available input Hilbert space with no constraints, other than fixed total initial photon number. We optimize to maximize the Fisher information, which is equivalent to minimizing the phase uncertainty. We find that in the limit of zero loss, the optimal state is the maximally path-entangled (so-called N00N) state, for small loss, the optimal state gradually deviates from the N00N state, and in the limit of large loss, the optimal state converges to a generalized two-mode coherent state, with a finite total number of photons. The resul...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
Quantum information theory is applied to practical interferometer-based phase measurements to deduce...
In this paper we present a search algorithm that finds useful optical quantum states which can be cr...
We give a detailed discussion of optimal quantum states for optical two-mode interferometry in the p...
To acquire the best path-entangled photon Fock states for robust quantum-optical metrology with pari...
By using a systematic optimization approach, we determine quantum states of light with definite phot...
International audienceMach-Zehnder interferometer is a common device in quantum phase estimation and...
International audienceMach-Zehnder interferometer is a common device in quantum phase estimation and...
International audienceMach-Zehnder interferometer is a common device in quantum phase estimation and...
International audienceMach-Zehnder interferometer is a common device in quantum phase estimation and...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
We address two-mode quantum interferometry as binary measurements aimed at determining whether or no...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
Quantum information theory is applied to practical interferometer-based phase measurements to deduce...
In this paper we present a search algorithm that finds useful optical quantum states which can be cr...
We give a detailed discussion of optimal quantum states for optical two-mode interferometry in the p...
To acquire the best path-entangled photon Fock states for robust quantum-optical metrology with pari...
By using a systematic optimization approach, we determine quantum states of light with definite phot...
International audienceMach-Zehnder interferometer is a common device in quantum phase estimation and...
International audienceMach-Zehnder interferometer is a common device in quantum phase estimation and...
International audienceMach-Zehnder interferometer is a common device in quantum phase estimation and...
International audienceMach-Zehnder interferometer is a common device in quantum phase estimation and...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
We address two-mode quantum interferometry as binary measurements aimed at determining whether or no...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
Quantum information theory is applied to practical interferometer-based phase measurements to deduce...
In this paper we present a search algorithm that finds useful optical quantum states which can be cr...