We address the trade-off between information gain and state disturbance in measurement performed on qudit systems and devise a class of optimal measurement schemes that saturate the ultimate bound imposed by quantum mechanics to estimation and transmission fidelities. The schemes are minimal, i.e. they involve a single additional probe qudit, and optimal, i.e. they provide the maximum amount of information compatible with a given level of disturbance. The performances of optimal single-user schemes in extracting information by sequential measurements in a N-user transmission line are also investigated, and the optimality is analyzed by explicit evaluation of fidelities. We found that the estimation fidelity does not depend on the number of ...
Quantum measurement unavoidably disturbs the state of a quantum system if any information about the ...
We present the optimal scheme for estimating a pure qubit state by means of local measurements on N ...
In this thesis, I reflect on quantum instruments that measure the state of pure finite dimensional q...
We address the trade-off between information gain and state disturbance in measurement performed on ...
To maximize average information gain for a classical measurement, all outcomes of an observation mus...
A class of optimal quantum repeaters for qubits is suggested. The schemes are minimal, i.e., they in...
The extraction of information from a quantum system unavoidably implies a modification of the measur...
We address the information–disturbance tradeoff for state measurements on continuous variable Gaussi...
We present optimal and minimal measurements on identical copies of an unknown state of a quantum bit...
We compare and contrast the error probability and fidelity as measures of the quality of the receive...
Quantum measurement is a nontrivial physical process connecting the quantum and classical worlds. Ho...
We explore the open problem of the most efficient way to communicate classical data across quantum c...
Measurement noise is a major source of noise in quantum metrology. Here, we explore preprocessing pr...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
We present a simple information-disturbance tradeoff relation valid for any general measurement appa...
Quantum measurement unavoidably disturbs the state of a quantum system if any information about the ...
We present the optimal scheme for estimating a pure qubit state by means of local measurements on N ...
In this thesis, I reflect on quantum instruments that measure the state of pure finite dimensional q...
We address the trade-off between information gain and state disturbance in measurement performed on ...
To maximize average information gain for a classical measurement, all outcomes of an observation mus...
A class of optimal quantum repeaters for qubits is suggested. The schemes are minimal, i.e., they in...
The extraction of information from a quantum system unavoidably implies a modification of the measur...
We address the information–disturbance tradeoff for state measurements on continuous variable Gaussi...
We present optimal and minimal measurements on identical copies of an unknown state of a quantum bit...
We compare and contrast the error probability and fidelity as measures of the quality of the receive...
Quantum measurement is a nontrivial physical process connecting the quantum and classical worlds. Ho...
We explore the open problem of the most efficient way to communicate classical data across quantum c...
Measurement noise is a major source of noise in quantum metrology. Here, we explore preprocessing pr...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
We present a simple information-disturbance tradeoff relation valid for any general measurement appa...
Quantum measurement unavoidably disturbs the state of a quantum system if any information about the ...
We present the optimal scheme for estimating a pure qubit state by means of local measurements on N ...
In this thesis, I reflect on quantum instruments that measure the state of pure finite dimensional q...