The problem of estimating the frequency of a two-level atom in a noisy environment is studied. Our interest is to minimise both the energetic cost of the protocol and the statistical uncertainty of the estimate. In particular, we prepare a probe in a `GHZ-diagonal' state by means of a sequence of qubit gates applied on an ensemble of n atoms in thermal equilibrium. Noise is introduced via a phenomenological time-nonlocal quantum master equation, which gives rise to a phase-covariant dissipative dynamics. After an interval of free evolution, the n-atom probe is globally measured at an interrogation time chosen to minimise the error bars of the final estimate. We model explicitly a measurement scheme which becomes optimal in a suitable parame...
Entanglement enhanced quantum metrology has been well investigated for beating the standard quantum ...
The geometry of quantum states provides a unifying framework for estimation processes based on quant...
© 2019, The Author(s). Quantum multiparameter estimation involves estimating multiple parameters sim...
The problem of estimating the frequency of a two-level atom in a noisy environment is studied. Our i...
We consider frequency estimation in a noisy environment with noisy probes. This builds on previous s...
In recent years, several estimation strategies have been formulated to determine the value of an unk...
We study quantum frequency estimation for $N$ qubits subjected to independent Markovian noise, via s...
Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimat...
The problem of estimating an unknown phase ϕ using two-level probes in the presence of unital phase-...
We explore the ability of a qubit probe to characterize unknown parameters of its environment. By re...
Original article can be found at: http://prola.aps.org/--Copyright American Physical Society DOI : 1...
We address the use of entangled qubits as quantum probes to characterize the noise induced by comple...
We propose a quantum-enhanced sensing protocol to measure the response of a target object to the fre...
Quantum-enhanced, idler-free sensing protocol to measure the response of a target object to the freq...
We design, by invariant-based inverse engineering, driving fields that invert the population of a tw...
Entanglement enhanced quantum metrology has been well investigated for beating the standard quantum ...
The geometry of quantum states provides a unifying framework for estimation processes based on quant...
© 2019, The Author(s). Quantum multiparameter estimation involves estimating multiple parameters sim...
The problem of estimating the frequency of a two-level atom in a noisy environment is studied. Our i...
We consider frequency estimation in a noisy environment with noisy probes. This builds on previous s...
In recent years, several estimation strategies have been formulated to determine the value of an unk...
We study quantum frequency estimation for $N$ qubits subjected to independent Markovian noise, via s...
Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimat...
The problem of estimating an unknown phase ϕ using two-level probes in the presence of unital phase-...
We explore the ability of a qubit probe to characterize unknown parameters of its environment. By re...
Original article can be found at: http://prola.aps.org/--Copyright American Physical Society DOI : 1...
We address the use of entangled qubits as quantum probes to characterize the noise induced by comple...
We propose a quantum-enhanced sensing protocol to measure the response of a target object to the fre...
Quantum-enhanced, idler-free sensing protocol to measure the response of a target object to the freq...
We design, by invariant-based inverse engineering, driving fields that invert the population of a tw...
Entanglement enhanced quantum metrology has been well investigated for beating the standard quantum ...
The geometry of quantum states provides a unifying framework for estimation processes based on quant...
© 2019, The Author(s). Quantum multiparameter estimation involves estimating multiple parameters sim...