Quantum hypothesis testing has been greatly advanced for the binary discrimination of two states, or two channels. In this setting, we already know that quantum entanglement can be used to enhance the discrimination of two bosonic channels. Here, we remove the restriction of binary hypotheses and show that entangled photons can remarkably boost the discrimination of multiple bosonic channels. More precisely, we formulate a general problem of channel-position finding where the goal is to determine the position of a target channel among many background channels. We prove that, using entangled photons at the input and a generalized form of conditional nulling receiver at the output, we may outperform any classical strategy. Our results can be ...
AbstractWe review the criteria for separability and quantum entanglement, both in a bipartite as wel...
The challenge of pattern recognition is to invoke a strategy that can accurately extract features of...
We address two-mode quantum interferometry as binary measurements aimed at determining whether or no...
Quantum hypothesis testing has been greatly advanced for the binary discrimination of two states, or...
Quantum hypothesis testing is a central task in the entire field of quantum information theory. Unde...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2010.Cataloged from PDF ve...
It is well known that entanglement can benefit quantum information processing tasks. Quantum illumin...
We analyze optical binary communication assisted by entanglement and show that: i) ideal entangled c...
The final goal of quantum hypothesis testing is to achieve quantum advantage over all possible class...
The characterisation of Quantum Channel Discrimination (QCD) offers critical insight for future quan...
Quantum channels model many physical processes. For this reason, hypothesis testing between quantum ...
Abstract The characterisation of Quantum Channel Discrimination (QCD) offers critical insight for fu...
Entanglement is a powerful tool for quantum sensing, and entangled states can greatly boost the disc...
The ability to precisely discriminate multiple quantum channels is fundamental to achieving quantum ...
Entanglement is a feature at the heart of quantum information. Its enablement of unusual correlatio...
AbstractWe review the criteria for separability and quantum entanglement, both in a bipartite as wel...
The challenge of pattern recognition is to invoke a strategy that can accurately extract features of...
We address two-mode quantum interferometry as binary measurements aimed at determining whether or no...
Quantum hypothesis testing has been greatly advanced for the binary discrimination of two states, or...
Quantum hypothesis testing is a central task in the entire field of quantum information theory. Unde...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2010.Cataloged from PDF ve...
It is well known that entanglement can benefit quantum information processing tasks. Quantum illumin...
We analyze optical binary communication assisted by entanglement and show that: i) ideal entangled c...
The final goal of quantum hypothesis testing is to achieve quantum advantage over all possible class...
The characterisation of Quantum Channel Discrimination (QCD) offers critical insight for future quan...
Quantum channels model many physical processes. For this reason, hypothesis testing between quantum ...
Abstract The characterisation of Quantum Channel Discrimination (QCD) offers critical insight for fu...
Entanglement is a powerful tool for quantum sensing, and entangled states can greatly boost the disc...
The ability to precisely discriminate multiple quantum channels is fundamental to achieving quantum ...
Entanglement is a feature at the heart of quantum information. Its enablement of unusual correlatio...
AbstractWe review the criteria for separability and quantum entanglement, both in a bipartite as wel...
The challenge of pattern recognition is to invoke a strategy that can accurately extract features of...
We address two-mode quantum interferometry as binary measurements aimed at determining whether or no...