Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologically relevant parameters such as phase, frequency, or magnetic fields. Probe states are usually tailored to the particular dynamics whose parameters are being estimated. Here we consider a novel framework where quantum estimation is performed in an interferometric configuration, using bipartite probe states prepared when only the spectrum of the generating Hamiltonian is known. We introduce a figure of merit for the scheme, given by the worst-case precision over all suitable Hamiltonians, and prove that it amounts exactly to a computable measure of discord-type quantum correlations for the input probe. We complement our theoretical results w...
Entanglement has long stood as one of the characteristic features of quantum mechanics, yet recent d...
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...
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...
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...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
Multipartite quantum systems show properties which do not admit a classical explanation. In particul...
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...
Quantum mechanics predicts that measurements of incompatible observables carry a minimum uncertainty...
This is a two-part thesis strung together by a common underlying theme—quantum correlations. We pres...
We introduce measures of quantum coherence as the speed of evolution of a system under decoherence. ...
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...
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...
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...
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...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
Multipartite quantum systems show properties which do not admit a classical explanation. In particul...
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...
Quantum mechanics predicts that measurements of incompatible observables carry a minimum uncertainty...
This is a two-part thesis strung together by a common underlying theme—quantum correlations. We pres...
We introduce measures of quantum coherence as the speed of evolution of a system under decoherence. ...
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...
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...