Quantum theory allows the traversing of multiple channels in a superposition of different orders. When the order in which the channels are traversed is controlled by an auxiliary quantum system, various unknown parameters of the channels can be estimated by measuring only the control system, even when the state of the probe alone would be insensitive. Moreover, increasing the dimension of the control system increases the number of simultaneously estimable parameters, which has important metrological ramifications. We demonstrate this capability for simultaneously estimating both unitary and noise parameters, including multiple parameters from the same unitary such as rotation angles and axes and from noise channels such as depolarization, d...
Using quantum systems as sensors or probes has been shown to greatly improve the precision of parame...
The statistical error in any estimation can be reduced by repeating the measurement and averaging th...
Quantum hypothesis testing plays a pivotal role in quantum technologies, making decisions or drawing...
Entanglement is generally considered necessary for achieving the Heisenberg limit in quantum metrolo...
We derive fundamental bounds on the maximal achievable precision in multiparameter noisy quantum met...
Quantum metrology enhances measurement precision by utilising the properties of quantum physics. In ...
Entanglement enhanced quantum metrology has been well investigated for beating the standard quantum ...
The simultaneous quantum estimation of multiple parameters can provide a better precision than estim...
The ability to characterise a Hamiltonian with high precision is crucial for the implementation of q...
Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimat...
We derive new bounds on achievable precision in the most general adaptive quantum metrological scena...
We present a new proof of the quantum Cramer-Rao bound for precision parameter estimation and extend...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
© 2019, The Author(s). Quantum multiparameter estimation involves estimating multiple parameters sim...
Quantum parameter estimation offers solid conceptual grounds for the design of sensors enjoying quan...
Using quantum systems as sensors or probes has been shown to greatly improve the precision of parame...
The statistical error in any estimation can be reduced by repeating the measurement and averaging th...
Quantum hypothesis testing plays a pivotal role in quantum technologies, making decisions or drawing...
Entanglement is generally considered necessary for achieving the Heisenberg limit in quantum metrolo...
We derive fundamental bounds on the maximal achievable precision in multiparameter noisy quantum met...
Quantum metrology enhances measurement precision by utilising the properties of quantum physics. In ...
Entanglement enhanced quantum metrology has been well investigated for beating the standard quantum ...
The simultaneous quantum estimation of multiple parameters can provide a better precision than estim...
The ability to characterise a Hamiltonian with high precision is crucial for the implementation of q...
Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimat...
We derive new bounds on achievable precision in the most general adaptive quantum metrological scena...
We present a new proof of the quantum Cramer-Rao bound for precision parameter estimation and extend...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
© 2019, The Author(s). Quantum multiparameter estimation involves estimating multiple parameters sim...
Quantum parameter estimation offers solid conceptual grounds for the design of sensors enjoying quan...
Using quantum systems as sensors or probes has been shown to greatly improve the precision of parame...
The statistical error in any estimation can be reduced by repeating the measurement and averaging th...
Quantum hypothesis testing plays a pivotal role in quantum technologies, making decisions or drawing...