Quantum states of light can enable sensing configurations with sensitivities beyond the shot-noise limit (SNL). In order to better take advantage of available quantum resources and obtain the maximum possible sensitivity, it is necessary to determine fundamental sensitivity limits for different possible configurations for a given sensing system. Here, due to their wide applicability, we focus on optical resonance sensors, which detect a change in a parameter of interest through a resonance shift. We compare their fundamental sensitivity limits set by the quantum Cram\'er-Rao bound (QCRB) based on the estimation of changes in transmission or phase of a probing bright two-mode squeezed state (bTMSS) of light. We show that the fundamental sens...
We study the generalized limit for parameter sensitivity in quantum estimation theory considering th...
In two-mode interferometry, for a given total photon number N, entangled Fock state superpositions o...
By exploiting the exotic quantum states of a probe, it is possible to realize efficient sensors that...
Quantum metrology is the application of quantum mechanics towards the enhancement of measurements. ...
The quantum Cramér-Rao bound (QCRB) sets a fundamental limit for the measurement of classical signal...
Abstract. We present a first feasible scheme for detecting the phase of a single mode of radiation w...
The fundamental quantum interferometry bound limits the sensitivity of an interferometer for a given...
Quantum mechanics establishes the ultimate limit to the scaling of the precision on any parameter, b...
Quantum mechanics establishes the ultimate limit to the scaling of the precision on any parameter, b...
It is shown that the maximal phase sensitivity of a two-path interferometer with high-intensity cohe...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
International audienceMultimode Gaussian quantum light, which includes multimode squeezed and multip...
International audienceMultimode Gaussian quantum light, which includes multimode squeezed and multip...
International audienceMultimode Gaussian quantum light, which includes multimode squeezed and multip...
We propose a quantum-enhanced sensing protocol to measure the response of a target object to the fre...
We study the generalized limit for parameter sensitivity in quantum estimation theory considering th...
In two-mode interferometry, for a given total photon number N, entangled Fock state superpositions o...
By exploiting the exotic quantum states of a probe, it is possible to realize efficient sensors that...
Quantum metrology is the application of quantum mechanics towards the enhancement of measurements. ...
The quantum Cramér-Rao bound (QCRB) sets a fundamental limit for the measurement of classical signal...
Abstract. We present a first feasible scheme for detecting the phase of a single mode of radiation w...
The fundamental quantum interferometry bound limits the sensitivity of an interferometer for a given...
Quantum mechanics establishes the ultimate limit to the scaling of the precision on any parameter, b...
Quantum mechanics establishes the ultimate limit to the scaling of the precision on any parameter, b...
It is shown that the maximal phase sensitivity of a two-path interferometer with high-intensity cohe...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
International audienceMultimode Gaussian quantum light, which includes multimode squeezed and multip...
International audienceMultimode Gaussian quantum light, which includes multimode squeezed and multip...
International audienceMultimode Gaussian quantum light, which includes multimode squeezed and multip...
We propose a quantum-enhanced sensing protocol to measure the response of a target object to the fre...
We study the generalized limit for parameter sensitivity in quantum estimation theory considering th...
In two-mode interferometry, for a given total photon number N, entangled Fock state superpositions o...
By exploiting the exotic quantum states of a probe, it is possible to realize efficient sensors that...