Conventional classical sensors are approaching their maximum sensitivity levels in many areas. Yet these levels are still far from the ultimate limits dictated by quantum mechanics. Quantum sensors promise a substantial step ahead by taking advantage of the salient sensitivity of quantum states to the environment. Here, we focus on sensing rotations, a topic of broad application. By resorting to the basic tools of estimation theory, we derive states that achieve the ultimate sensitivities in estimating both the orientation of an unknown rotation axis and the angle rotated about it. The critical enhancement obtained with these optimal states should make of them an indispensable ingredient in the next generation of rotation sensors that is no...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
We present a weak measurement protocol that permits a sensitive estimation of angular rotations base...
Quantum estimation of a two-phases spin rotation We study the estimation of an infinitesimal rotatio...
Conventional classical sensors are approaching their maximum sensitivity levels in many areas. Yet t...
We report an experiment estimating the three parameters of a general rotation. The scheme uses quant...
We report an experiment estimating the three parameters of a general rotation. The scheme uses quant...
Adopting quantum resources for parameter estimation discloses the possibility to realize quantum sen...
peer reviewedCoherent and anticoherent states of spin systems up to spin j=2 are known to be optimal...
Exploring high sensitivity on the measurement of angular rotations is an outstanding challenge in op...
We show that the precision of an angular measurement or rotation (e.g., on the orientation of a qubi...
Quantum metrology allows for a tremendous boost in the accuracy of measurement of diverse physical p...
Classical measurement strategies in many areas are approaching their maximum resolution and sensitiv...
Quantum metrology bears a great promise in enhancing measurement precision, but is unlikely to becom...
Adopting quantum resources for parameter estimation discloses the possibility to realize quantum sen...
We experimentally investigate three methods, utilizing different atomic observables and entangled st...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
We present a weak measurement protocol that permits a sensitive estimation of angular rotations base...
Quantum estimation of a two-phases spin rotation We study the estimation of an infinitesimal rotatio...
Conventional classical sensors are approaching their maximum sensitivity levels in many areas. Yet t...
We report an experiment estimating the three parameters of a general rotation. The scheme uses quant...
We report an experiment estimating the three parameters of a general rotation. The scheme uses quant...
Adopting quantum resources for parameter estimation discloses the possibility to realize quantum sen...
peer reviewedCoherent and anticoherent states of spin systems up to spin j=2 are known to be optimal...
Exploring high sensitivity on the measurement of angular rotations is an outstanding challenge in op...
We show that the precision of an angular measurement or rotation (e.g., on the orientation of a qubi...
Quantum metrology allows for a tremendous boost in the accuracy of measurement of diverse physical p...
Classical measurement strategies in many areas are approaching their maximum resolution and sensitiv...
Quantum metrology bears a great promise in enhancing measurement precision, but is unlikely to becom...
Adopting quantum resources for parameter estimation discloses the possibility to realize quantum sen...
We experimentally investigate three methods, utilizing different atomic observables and entangled st...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
We present a weak measurement protocol that permits a sensitive estimation of angular rotations base...
Quantum estimation of a two-phases spin rotation We study the estimation of an infinitesimal rotatio...