The shot-noise detection limit in current high-precision magnetometry [I. Kominis, T. Kornack, J. Allred, and M. Romalis, Nature (London) 422, 596 (2003)] is a manifestation of quantum fluctuations that scale as rootN in an ensemble of N atoms. Here, we develop a procedure that combines continuous measurement and quantum Kalman filtering [V. Belavkin, Rep. Math. Phys. 43, 405 (1999)] to surpass this conventional limit by exploiting conditional spin squeezing to achieve 1/N field sensitivity. Our analysis demonstrates the importance of optimal estimation for high bandwidth precision magnetometry at the Heisenberg limit and also identifies an approximate estimator based on linear regression
We study the use of squeezed probe light and evasion of measurement back-action to enhance the sensi...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
We demonstrate sub-shotnoise sensitivity to an external magnetic field with a broadband atomic magne...
The shot-noise detection limit in current high-precision magnetometry [I. Kominis, T. Kornack, J. Al...
We address the estimation of the magnetic field B acting on an ensemble of atoms with total spin J s...
We demonstrate that quantum nondemolition measurement, combined with a suitable parameter estimation...
We argue that it is possible in principle to reduce the uncertainty of an atomic magnetometer by dou...
We consider the limitations due to noise (e.g., quantum projection noise and photon shot-noise) on t...
We investigate sensing of magnetic fields using quantum spin chains at finite temperature and exploi...
Phase estimation algorithms are key protocols in quantum information processing. Besides application...
We show that continuous quantum nondemolition (QND) measurement of an atomic ensemble is able to imp...
We report a metrology scheme which measures magnetic susceptibility of an atomic spin ensemble along...
Quantum metrology uses quantum features such as entanglement and squeezing to improve the sensitivit...
We examine the results of the paper “Precision metrology using weak measurements” (Zhang et al. arXi...
We propose a quantum-enhanced iterative (with K steps) measurement scheme based on an ensemble of N ...
We study the use of squeezed probe light and evasion of measurement back-action to enhance the sensi...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
We demonstrate sub-shotnoise sensitivity to an external magnetic field with a broadband atomic magne...
The shot-noise detection limit in current high-precision magnetometry [I. Kominis, T. Kornack, J. Al...
We address the estimation of the magnetic field B acting on an ensemble of atoms with total spin J s...
We demonstrate that quantum nondemolition measurement, combined with a suitable parameter estimation...
We argue that it is possible in principle to reduce the uncertainty of an atomic magnetometer by dou...
We consider the limitations due to noise (e.g., quantum projection noise and photon shot-noise) on t...
We investigate sensing of magnetic fields using quantum spin chains at finite temperature and exploi...
Phase estimation algorithms are key protocols in quantum information processing. Besides application...
We show that continuous quantum nondemolition (QND) measurement of an atomic ensemble is able to imp...
We report a metrology scheme which measures magnetic susceptibility of an atomic spin ensemble along...
Quantum metrology uses quantum features such as entanglement and squeezing to improve the sensitivit...
We examine the results of the paper “Precision metrology using weak measurements” (Zhang et al. arXi...
We propose a quantum-enhanced iterative (with K steps) measurement scheme based on an ensemble of N ...
We study the use of squeezed probe light and evasion of measurement back-action to enhance the sensi...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
We demonstrate sub-shotnoise sensitivity to an external magnetic field with a broadband atomic magne...