We address the estimation of the magnetic field B acting on an ensemble of atoms with total spin J subjected to collective transverse noise. By preparing an initial spin coherent state, for any measurement performed after the evolution, the mean-square error of the estimate is known to scale as , i.e. no quantum enhancement is obtained. Here, we consider the possibility of continuously monitoring the atomic environment, and conclusively show that strategies based on time-continuous non-demolition measurements followed by a final strong measurement may achieve Heisenberg-limited scaling and also a monitoring-enhanced scaling in terms of the interrogation time. We also find that time-continuous schemes are robust against detection losses, as ...
We address the question of whether the super-Heisenberg scaling for quantum estimation is indeed rea...
We propose a quantum-enhanced iterative (with K steps) measurement scheme based on an ensemble of N ...
Under ideal conditions, quantum metrology promises a precision gain over classical techniques scalin...
The shot-noise detection limit in current high-precision magnetometry [I. Kominis, T. Kornack, J. Al...
We study quantum frequency estimation for NN qubits subjected to independent Markovian noise, vi...
We show that continuous quantum nondemolition (QND) measurement of an atomic ensemble is able to imp...
We demonstrate that quantum nondemolition measurement, combined with a suitable parameter estimation...
Phase estimation algorithms are key protocols in quantum information processing. Besides application...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
A quantum metrology protocol for parameter estimation is typically comprised of three stages: probe ...
We describe the formalism for optimally estimating and controlling both the state of a spin ensemble...
In recent years, several estimation strategies have been formulated to determine the value of an unk...
Continuous measurements on correlated quantum systems, in addition to providing information on the s...
We argue that it is possible in principle to reduce the uncertainty of an atomic magnetometer by dou...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems, an...
We address the question of whether the super-Heisenberg scaling for quantum estimation is indeed rea...
We propose a quantum-enhanced iterative (with K steps) measurement scheme based on an ensemble of N ...
Under ideal conditions, quantum metrology promises a precision gain over classical techniques scalin...
The shot-noise detection limit in current high-precision magnetometry [I. Kominis, T. Kornack, J. Al...
We study quantum frequency estimation for NN qubits subjected to independent Markovian noise, vi...
We show that continuous quantum nondemolition (QND) measurement of an atomic ensemble is able to imp...
We demonstrate that quantum nondemolition measurement, combined with a suitable parameter estimation...
Phase estimation algorithms are key protocols in quantum information processing. Besides application...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
A quantum metrology protocol for parameter estimation is typically comprised of three stages: probe ...
We describe the formalism for optimally estimating and controlling both the state of a spin ensemble...
In recent years, several estimation strategies have been formulated to determine the value of an unk...
Continuous measurements on correlated quantum systems, in addition to providing information on the s...
We argue that it is possible in principle to reduce the uncertainty of an atomic magnetometer by dou...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems, an...
We address the question of whether the super-Heisenberg scaling for quantum estimation is indeed rea...
We propose a quantum-enhanced iterative (with K steps) measurement scheme based on an ensemble of N ...
Under ideal conditions, quantum metrology promises a precision gain over classical techniques scalin...