We give a detailed discussion of optimal quantum states for optical two-mode interferometry in the presence of photon losses. We derive analytical formulae for the precision of phase estimation obtainable using quantum states of light with a definite photon number and prove that maximization of the precision is a convex optimization problem. The corresponding optimal precision, i.e., the lowest possible uncertainty, is shown to beat the standard quantum limit thus outperforming classical interferometry. Furthermore, we discuss more general inputs: states with indefinite photon number and states with photons distributed between distinguishable time bins. We prove that neither of these is helpful in improving phase estimation precision.Peer r...
International audienceMach-Zehnder interferometer is a common device in quantum phase estimation and...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
By using a systematic optimization approach, we determine quantum states of light with definite phot...
We optimize two-mode entangled number states of light in the presence of loss in order to maximize t...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by propagation or detection. The op...
The sensitivity in optical interferometry is strongly affected by propagation or detection. The op...
Quantum information theory is applied to practical interferometer-based phase measurements to deduce...
Quantum information theory, applied to optical interferometry, yields a 1/n scaling of phase uncerta...
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...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
By using a systematic optimization approach, we determine quantum states of light with definite phot...
We optimize two-mode entangled number states of light in the presence of loss in order to maximize t...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by propagation or detection. The op...
The sensitivity in optical interferometry is strongly affected by propagation or detection. The op...
Quantum information theory is applied to practical interferometer-based phase measurements to deduce...
Quantum information theory, applied to optical interferometry, yields a 1/n scaling of phase uncerta...
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...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...