We discuss quantum variational optimization of Ramsey interferometry with ensembles of $N$ entangled atoms, and its application to atomic clocks based on a Bayesian approach to phase estimation. We identify best input states and generalized measurements within a variational approximation for the corresponding entangling and decoding quantum circuits. These circuits are built from basic quantum operations available for the particular sensor platform, such as one-axis twisting, or finite range interactions. Optimization is defined relative to a cost function, which in the present study is the Bayesian mean square error of the estimated phase for a given prior distribution, i.e. we optimize for a finite dynamic range of the interferometer. In ...
Phase estimation represents a significant example to test the application of quantum theory for enha...
The optimal precision of frequency measurements in the presence of decoherence is discussed. We anal...
Ramsey interferometry is routinely used in quantum metrology for the most sensitive measurements of ...
Original article can be found at: http://prola.aps.org/--Copyright American Physical Society DOI : 1...
Arrays of atoms trapped in optical tweezers combine features of programmable analog quantum simulato...
We develop a variational principle to determine the quantum controls and initial state that optimize...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
We theoretically study the effect of added nonlinearity from atom-atom interactions on precision of ...
Measurement noise is a major source of noise in quantum metrology. Here, we explore preprocessing pr...
| openaire: EC/H2020/862644/EU//QUARTETQuantum phase estimation is a paradigmatic problem in quantum...
International audienceA new class of atomic interferences using ultranarrow optical transitions are ...
We present the theory of how to achieve phase measurements with the minimum possible variance in way...
The Ramsey interferometer is a prime example of precise control at the quantum level. It is usually ...
We minimize the stray electric field in a linear Paul trap quickly and accurately, by applying inter...
Phase estimation represents a significant example to test the application of quantum theory for enha...
The optimal precision of frequency measurements in the presence of decoherence is discussed. We anal...
Ramsey interferometry is routinely used in quantum metrology for the most sensitive measurements of ...
Original article can be found at: http://prola.aps.org/--Copyright American Physical Society DOI : 1...
Arrays of atoms trapped in optical tweezers combine features of programmable analog quantum simulato...
We develop a variational principle to determine the quantum controls and initial state that optimize...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
We theoretically study the effect of added nonlinearity from atom-atom interactions on precision of ...
Measurement noise is a major source of noise in quantum metrology. Here, we explore preprocessing pr...
| openaire: EC/H2020/862644/EU//QUARTETQuantum phase estimation is a paradigmatic problem in quantum...
International audienceA new class of atomic interferences using ultranarrow optical transitions are ...
We present the theory of how to achieve phase measurements with the minimum possible variance in way...
The Ramsey interferometer is a prime example of precise control at the quantum level. It is usually ...
We minimize the stray electric field in a linear Paul trap quickly and accurately, by applying inter...
Phase estimation represents a significant example to test the application of quantum theory for enha...
The optimal precision of frequency measurements in the presence of decoherence is discussed. We anal...
Ramsey interferometry is routinely used in quantum metrology for the most sensitive measurements of ...