Under ideal conditions, quantum metrology promises a precision gain over classical techniques scaling quadratically with the number of probe particles. At the same time, no-go results have shown that generic, uncorrelated noise limits the quantum advantage to a constant factor. In frequency estimation scenarios, however, there are exceptions to this rule and, in particular, it has been found that transversal dephasing does allow for a scaling quantum advantage. Yet, it has remained unclear whether such exemptions can be exploited in practical scenarios. Here, we argue that the transversal-noise model applies to the setting of recent magnetometry experiments and show that a scaling advantage can be maintained with one-axis-twisted spin-squee...
Abstract. Quantum metrology uses quantum features such as entanglement and squeezing to improve the ...
The shot-noise detection limit in current high-precision magnetometry [I. Kominis, T. Kornack, J. Al...
Parameter estimation is of fundamental importance in areas from atomic spectroscopy and atomic clock...
Under ideal conditions, quantum metrology promises a precision gain over classical techniques scalin...
Under ideal conditions, quantum metrology promises a precision gain over classical techniques scalin...
Quantum metrology uses quantum features such as entanglement and squeezing to improve the sensitivit...
Quantum metrology uses quantum features such as entanglement and squeezing to improve the sensitivit...
The ubiquitous presence of shot noise sets a fundamental limit to the measurement precision in class...
Noise properties of an idealized atomic magnetometer that utilizes spin squeezing induced by a conti...
The field of quantum metrology promisesmeasurement devices that are fundamentally superior to conven...
The field of quantum metrology promisesmeasurement devices that are fundamentally superior to conven...
We consider quantum metrology in noisy environments, where the effect of noise and decoherence limit...
The impact of measurement imperfections on quantum metrology protocols has not been approached in a ...
We argue that it is possible in principle to reduce the uncertainty of an atomic magnetometer by dou...
We study the estimation precision attainable by entanglement-enhanced Ramsey interferometry in the p...
Abstract. Quantum metrology uses quantum features such as entanglement and squeezing to improve the ...
The shot-noise detection limit in current high-precision magnetometry [I. Kominis, T. Kornack, J. Al...
Parameter estimation is of fundamental importance in areas from atomic spectroscopy and atomic clock...
Under ideal conditions, quantum metrology promises a precision gain over classical techniques scalin...
Under ideal conditions, quantum metrology promises a precision gain over classical techniques scalin...
Quantum metrology uses quantum features such as entanglement and squeezing to improve the sensitivit...
Quantum metrology uses quantum features such as entanglement and squeezing to improve the sensitivit...
The ubiquitous presence of shot noise sets a fundamental limit to the measurement precision in class...
Noise properties of an idealized atomic magnetometer that utilizes spin squeezing induced by a conti...
The field of quantum metrology promisesmeasurement devices that are fundamentally superior to conven...
The field of quantum metrology promisesmeasurement devices that are fundamentally superior to conven...
We consider quantum metrology in noisy environments, where the effect of noise and decoherence limit...
The impact of measurement imperfections on quantum metrology protocols has not been approached in a ...
We argue that it is possible in principle to reduce the uncertainty of an atomic magnetometer by dou...
We study the estimation precision attainable by entanglement-enhanced Ramsey interferometry in the p...
Abstract. Quantum metrology uses quantum features such as entanglement and squeezing to improve the ...
The shot-noise detection limit in current high-precision magnetometry [I. Kominis, T. Kornack, J. Al...
Parameter estimation is of fundamental importance in areas from atomic spectroscopy and atomic clock...