The estimation of multiple parameters in quantum metrology is important for a vast array of applications in quantum information processing. However, the unattainability of fundamental precision bounds for incompatible observables greatly diminishes the applicability of estimation theory in many practical implementations. The Holevo Cramér-Rao bound (HCRB) provides the most fundamental, simultaneously attainable bound for multiparameter estimation problems. A general closed form for the HCRB is not known given that it requires a complex optimization over multiple variables. In this work, we develop an analytic approach to solving the HCRB for two parameters. Our analysis reveals the role of the HCRB and its interplay with alternative bounds ...
The quantum Cramér-Rao bound is a cornerstone of modern quantum metrology, as it provides the ultima...
© 2019, The Author(s). Quantum multiparameter estimation involves estimating multiple parameters sim...
The quantum Cramer-Rao bound is a cornerstone of modern quantum metrology, as it provides the ultima...
The estimation of multiple parameters in quantum metrology is important for a vast array of applicat...
Only with the simultaneous estimation of multiple parameters are the quantum aspects of metrology fu...
We derive fundamental bounds on the maximal achievable precision in multiparameter noisy quantum met...
We derive fundamental bounds on the maximal achievable precision in multiparameter noisy quantum met...
We present a new proof of the quantum Cramer-Rao bound for precision parameter estimation and extend...
Finding the optimal attainable precisions in quantum multiparameter metrology is a non-trivial probl...
The simultaneous quantum estimation of multiple parameters can provide a better precision than estim...
A longstanding problem in quantum metrology is how to extract as much information as possible in rea...
One of the characterizing feature of quantum mechanics is the incompatibility between observables, u...
In the quest to unlock the maximum potential of quantum sensors, it is of paramount importance to ha...
In the quest to unlock the maximum potential of quantum sensors, it is of paramount importance to ha...
The incompatibility of the measurements constraints the achievable precisions in multi-parameter qua...
The quantum Cramér-Rao bound is a cornerstone of modern quantum metrology, as it provides the ultima...
© 2019, The Author(s). Quantum multiparameter estimation involves estimating multiple parameters sim...
The quantum Cramer-Rao bound is a cornerstone of modern quantum metrology, as it provides the ultima...
The estimation of multiple parameters in quantum metrology is important for a vast array of applicat...
Only with the simultaneous estimation of multiple parameters are the quantum aspects of metrology fu...
We derive fundamental bounds on the maximal achievable precision in multiparameter noisy quantum met...
We derive fundamental bounds on the maximal achievable precision in multiparameter noisy quantum met...
We present a new proof of the quantum Cramer-Rao bound for precision parameter estimation and extend...
Finding the optimal attainable precisions in quantum multiparameter metrology is a non-trivial probl...
The simultaneous quantum estimation of multiple parameters can provide a better precision than estim...
A longstanding problem in quantum metrology is how to extract as much information as possible in rea...
One of the characterizing feature of quantum mechanics is the incompatibility between observables, u...
In the quest to unlock the maximum potential of quantum sensors, it is of paramount importance to ha...
In the quest to unlock the maximum potential of quantum sensors, it is of paramount importance to ha...
The incompatibility of the measurements constraints the achievable precisions in multi-parameter qua...
The quantum Cramér-Rao bound is a cornerstone of modern quantum metrology, as it provides the ultima...
© 2019, The Author(s). Quantum multiparameter estimation involves estimating multiple parameters sim...
The quantum Cramer-Rao bound is a cornerstone of modern quantum metrology, as it provides the ultima...