We present the results of generalized measurements of optical polarization designed to provide one of three or four distinct outcomes. This has allowed us to discriminate between nonorthogonal polarization states with an error probability that is close to the minimum allowed by quantum theory. Employing these optimal detection strategies on sets of three (trine) or four (tetrad) equiprobable symmetric nonorthogonal polarization states, we obtain a mutual information that exceeds the maximum value attainable using conventional (von Neumann) polarization measurements
The development of new techniques to improve measurements is crucial for all sciences. By employing ...
The optimal discrimination of nonorthogonal quantum states with minimum error probability is a funda...
Detecting and quantifying quantum entanglement of a given unknown state poses problems that are fund...
We present the results of generalized measurements of optical polarization designed to provide one o...
We present the results of generalized measurements of optical polarization designed to provide one o...
We present the results of generalized measurements of optical polarization designed to provide one o...
Perfect discrimination between non-orthogonal states is forbidden by the laws of quantum mechanics. ...
Perfect discrimination between non-orthogonal states is forbidden by the laws of quantum mechanics. ...
Perfect discrimination between non-orthogonal states is forbidden by the laws of quantum mechanics. ...
Strategies to optimally discriminate between quantum states are critical in quantum technologies. We...
Complete determination of the polarization state of light requires at least four distinct projective...
Complete determination of the polarization state of light requires at least four distinct projective...
We present the first experimental demonstration of the maximum confidence measurement strategy for q...
We demonstrate a class of optimum detection strategies for extracting the maximum information from s...
We report on the experimental implementation of a polarimeter based on a scheme known to be optimal ...
The development of new techniques to improve measurements is crucial for all sciences. By employing ...
The optimal discrimination of nonorthogonal quantum states with minimum error probability is a funda...
Detecting and quantifying quantum entanglement of a given unknown state poses problems that are fund...
We present the results of generalized measurements of optical polarization designed to provide one o...
We present the results of generalized measurements of optical polarization designed to provide one o...
We present the results of generalized measurements of optical polarization designed to provide one o...
Perfect discrimination between non-orthogonal states is forbidden by the laws of quantum mechanics. ...
Perfect discrimination between non-orthogonal states is forbidden by the laws of quantum mechanics. ...
Perfect discrimination between non-orthogonal states is forbidden by the laws of quantum mechanics. ...
Strategies to optimally discriminate between quantum states are critical in quantum technologies. We...
Complete determination of the polarization state of light requires at least four distinct projective...
Complete determination of the polarization state of light requires at least four distinct projective...
We present the first experimental demonstration of the maximum confidence measurement strategy for q...
We demonstrate a class of optimum detection strategies for extracting the maximum information from s...
We report on the experimental implementation of a polarimeter based on a scheme known to be optimal ...
The development of new techniques to improve measurements is crucial for all sciences. By employing ...
The optimal discrimination of nonorthogonal quantum states with minimum error probability is a funda...
Detecting and quantifying quantum entanglement of a given unknown state poses problems that are fund...