The interferometric power of a bipartite quantum state quantifies the precision, measured by quantum Fisher information, that such a state enables for the estimation of a parameter embedded in a unitary dynamics applied to one subsystem only, in the worst-case scenario where a full knowledge of the generator of the dynamics is not available a priori. For finite-dimensional systems, this quantity was proven to be a faithful measure of quantum correlations beyond entanglement. Here we extend the notion of interferometric power to the technologically relevant setting of optical interferometry with continuous-variable probes. By restricting to Gaussian local dynamics, we obtain a closed formula for the interferometric power of all two-mode Gaus...
We investigate the non-Markovianity of continuous-variable Gaussian quantum channels through the evo...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
The interferometric power of a bipartite quantum state quantifies the precision, measured by quantum...
The interferometric power of a bipartite quantum state quantifies the precision, measured by quantum...
Entanglement has long stood as one of the characteristic features of quantum mechanics, yet recent d...
Entanglement has long stood as one of the characteristic features of quantum mechanics, yet recent d...
We address high-precision measurements by active and passive interferometric schemes based on Gaussi...
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...
Entanglement has long stood as one of the characteristic features of quantum mechanics, yet recent d...
We address high-precision measurements by active and passive interferometric schemes based on Gaussi...
We investigate the non-Markovianity of continuous-variable Gaussian quantum channels through the evo...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
Bounds on the ultimate precision attainable in the estimation of a parameter in Gaussian quantum me...
We investigate the non-Markovianity of continuous-variable Gaussian quantum channels through the evo...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
The interferometric power of a bipartite quantum state quantifies the precision, measured by quantum...
The interferometric power of a bipartite quantum state quantifies the precision, measured by quantum...
Entanglement has long stood as one of the characteristic features of quantum mechanics, yet recent d...
Entanglement has long stood as one of the characteristic features of quantum mechanics, yet recent d...
We address high-precision measurements by active and passive interferometric schemes based on Gaussi...
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...
Entanglement has long stood as one of the characteristic features of quantum mechanics, yet recent d...
We address high-precision measurements by active and passive interferometric schemes based on Gaussi...
We investigate the non-Markovianity of continuous-variable Gaussian quantum channels through the evo...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
Bounds on the ultimate precision attainable in the estimation of a parameter in Gaussian quantum me...
We investigate the non-Markovianity of continuous-variable Gaussian quantum channels through the evo...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...