What is the ultimate performance for discriminating two arbitrary quantum channels acting on a finite-dimensional Hilbert space? Here we address this basic question by deriving a general and fundamental lower bound. More precisely, we investigate the symmetric discrimination of two arbitrary qudit channels by means of the most general protocols based on adaptive (feedback-assisted) quantum operations. In this general scenario, we first show how port-based teleportation can be used to simplify these adaptive protocols into a much simpler non-adaptive form, designing a new type of teleportation stretching. Then, we prove that the minimum error probability affecting the channel discrimination cannot beat a bound determined by the Choi matrices...
This paper introduces coherent quantum channel discrimination as a coherent version of conventional ...
The ability to precisely discriminate multiple quantum channels is fundamental to achieving quantum ...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
In this thesis we investigate the fundamental limitations that the laws of the quantum nature impose...
Quantum hypothesis testing is a central task in the entire field of quantum information theory. Unde...
Quantum hypothesis testing is an important tool for quantum information processing. Two main strateg...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
Quantum channel discrimination is a highly versatile task in quantum information. Almost any physica...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
Summary: We study the difficulty of discriminating between an arbitrary quantum channel and a "...
Amplitude damping (AD) channels are good models for many physical scenarios, and so the development ...
This paper studies the difficulty of discriminating between an arbitrary quantum channel and a “repl...
The class of quantum states known as Werner states have several interesting properties, which often ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
We consider the estimation of noise parameters in a quantum channel, assuming the most general strat...
This paper introduces coherent quantum channel discrimination as a coherent version of conventional ...
The ability to precisely discriminate multiple quantum channels is fundamental to achieving quantum ...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
In this thesis we investigate the fundamental limitations that the laws of the quantum nature impose...
Quantum hypothesis testing is a central task in the entire field of quantum information theory. Unde...
Quantum hypothesis testing is an important tool for quantum information processing. Two main strateg...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
Quantum channel discrimination is a highly versatile task in quantum information. Almost any physica...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
Summary: We study the difficulty of discriminating between an arbitrary quantum channel and a "...
Amplitude damping (AD) channels are good models for many physical scenarios, and so the development ...
This paper studies the difficulty of discriminating between an arbitrary quantum channel and a “repl...
The class of quantum states known as Werner states have several interesting properties, which often ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
We consider the estimation of noise parameters in a quantum channel, assuming the most general strat...
This paper introduces coherent quantum channel discrimination as a coherent version of conventional ...
The ability to precisely discriminate multiple quantum channels is fundamental to achieving quantum ...
Quantum communications promises reliable transmission of quantum information, efficient distribution...