We derive fundamental bounds on the maximal achievable precision in multiparameter noisy quantum metrology, valid under the most general entanglement-assisted adaptive strategy, which are tighter than the bounds obtained by a direct use of single-parameter results. This allows us to study the issue of the optimal probe incompatibility in the simultaneous estimation of multiple parameters in generic noisy channels, while so far the issue has been studied mostly in effectively noiseless scenarios (where the Heisenberg scaling is possible). We apply our results to the estimation of both unitary and noise parameters, and indicate models where the fundamental probe incompatibility is present. In particular, we show that in lossy multiple arm int...
Quantum metrology has many important applications in science and technology, ranging from frequency ...
We discuss the Heisenberg limit in the multiparameter metrology within two different paradigms -- th...
We introduce the notion of fault-tolerant quantum metrology to overcome noise beyond our control, as...
We derive fundamental bounds on the maximal achievable precision in multiparameter noisy quantum met...
© 2019, The Author(s). Quantum multiparameter estimation involves estimating multiple parameters sim...
The estimation of multiple parameters in quantum metrology is important for a vast array of applicat...
One of the characterizing feature of quantum mechanics is the incompatibility between observables, u...
Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimat...
Measurement noise is a major source of noise in quantum metrology. Here, we explore preprocessing pr...
Quantum metrology is a vividly developing topic of current research in both theoretical and experime...
Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimat...
Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimat...
The estimation of multiple parameters in quantum metrology is important for a vast array of applicat...
The incompatibility of the measurements constraints the achievable precisions in multi-parameter qua...
We consider a general model of unitary parameter estimation in the presence of Markovian noise, wher...
Quantum metrology has many important applications in science and technology, ranging from frequency ...
We discuss the Heisenberg limit in the multiparameter metrology within two different paradigms -- th...
We introduce the notion of fault-tolerant quantum metrology to overcome noise beyond our control, as...
We derive fundamental bounds on the maximal achievable precision in multiparameter noisy quantum met...
© 2019, The Author(s). Quantum multiparameter estimation involves estimating multiple parameters sim...
The estimation of multiple parameters in quantum metrology is important for a vast array of applicat...
One of the characterizing feature of quantum mechanics is the incompatibility between observables, u...
Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimat...
Measurement noise is a major source of noise in quantum metrology. Here, we explore preprocessing pr...
Quantum metrology is a vividly developing topic of current research in both theoretical and experime...
Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimat...
Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimat...
The estimation of multiple parameters in quantum metrology is important for a vast array of applicat...
The incompatibility of the measurements constraints the achievable precisions in multi-parameter qua...
We consider a general model of unitary parameter estimation in the presence of Markovian noise, wher...
Quantum metrology has many important applications in science and technology, ranging from frequency ...
We discuss the Heisenberg limit in the multiparameter metrology within two different paradigms -- th...
We introduce the notion of fault-tolerant quantum metrology to overcome noise beyond our control, as...