We address two-mode quantum interferometry as binary measurements aimed at determining whether or not a phase perturbation has occurred. We show that optimized measurements achieve the best sensitivity when the input state is entangled. A concrete set-up based on parametric sources of entanglement and photodetection is also suggested and shown to approach ideal sensitivity
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
We address the experimental determination of entanglement for systems made of a pair of polarization...
We address the experimental determination of entanglement for systems made of a pair of polarization...
We address the use of entanglement to improve the precision of generalized quantum interferometry, i...
We optimize two-mode entangled number states of light in the presence of loss in order to maximize t...
We analyze optical binary communication assisted by entanglement and show that: i) ideal entangled c...
Efficient certification and quantification of high dimensional entanglement of composite systems are...
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...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
Phase measurement using a lossless Mach-Zehnder interferometer with certain entangled N-photon state...
One important problem in quantum optics is to resolve an extremely small change of phase shift. The ...
Entanglement has long stood as one of the characteristic features of quantum mechanics, yet recent d...
We address the experimental determination of entanglement for systems made of a pair of polarization...
Entanglement has long stood as one of the characteristic features of quantum mechanics, yet recent d...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
We address the experimental determination of entanglement for systems made of a pair of polarization...
We address the experimental determination of entanglement for systems made of a pair of polarization...
We address the use of entanglement to improve the precision of generalized quantum interferometry, i...
We optimize two-mode entangled number states of light in the presence of loss in order to maximize t...
We analyze optical binary communication assisted by entanglement and show that: i) ideal entangled c...
Efficient certification and quantification of high dimensional entanglement of composite systems are...
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...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
Phase measurement using a lossless Mach-Zehnder interferometer with certain entangled N-photon state...
One important problem in quantum optics is to resolve an extremely small change of phase shift. The ...
Entanglement has long stood as one of the characteristic features of quantum mechanics, yet recent d...
We address the experimental determination of entanglement for systems made of a pair of polarization...
Entanglement has long stood as one of the characteristic features of quantum mechanics, yet recent d...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
We address the experimental determination of entanglement for systems made of a pair of polarization...
We address the experimental determination of entanglement for systems made of a pair of polarization...