Quantum-dense metrology (QDM) constitutes a special case of quantum metrology in which two orthogonal phase space projections of a signal are simultaneously sensed beyond the shot noise limit. Previously it was shown that the additional sensing channel that is provided by QDM contains information that can be used to identify and to discard corrupted segments from the measurement data. Here, we demonstrate a proof-of-principle experiment in which this information is used for improving the sensitivity without discarding any measurement segments. Our measurement reached sub-shot-noise performance although initially strong classical noise polluted the data
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
This thesis explores various protocols which can be applied to quantum metrology, such that precisio...
The statistical error in any estimation can be reduced by repeating the measurement and averaging th...
Quantum-dense metrology (QDM) constitutes a special case of quantum metrology in which two orthogona...
Quantum-dense metrology (QDM) constitutes a special case of quantum metrology in which two orthogona...
Quantum metrology utilizes entanglement for improving the sensitivity of measurements. Up to now the...
Quantum metrology utilizes entanglement to improve the sensitivity of measurements(1-3). To date, th...
Quantum metrology utilizes entanglement for improving the sensitivity of measurements. Up to now the...
Quantum metrology utilizes entanglement to improve the sensitivity of measurements(1-3). To date, th...
With the help of quantum entanglement, quantum dense metrology (QDM) is a technique that can make jo...
We introduce the notion of fault-tolerant quantum metrology to overcome noise beyond our control, as...
Quantum metrology is a vividly developing topic of current research in both theoretical and experime...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems, an...
Among the known resources of quantum metrology, one of the most practical and efficient is squeezing...
Nonclassical states are essential for optics-based quantum information processing, but their fragili...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
This thesis explores various protocols which can be applied to quantum metrology, such that precisio...
The statistical error in any estimation can be reduced by repeating the measurement and averaging th...
Quantum-dense metrology (QDM) constitutes a special case of quantum metrology in which two orthogona...
Quantum-dense metrology (QDM) constitutes a special case of quantum metrology in which two orthogona...
Quantum metrology utilizes entanglement for improving the sensitivity of measurements. Up to now the...
Quantum metrology utilizes entanglement to improve the sensitivity of measurements(1-3). To date, th...
Quantum metrology utilizes entanglement for improving the sensitivity of measurements. Up to now the...
Quantum metrology utilizes entanglement to improve the sensitivity of measurements(1-3). To date, th...
With the help of quantum entanglement, quantum dense metrology (QDM) is a technique that can make jo...
We introduce the notion of fault-tolerant quantum metrology to overcome noise beyond our control, as...
Quantum metrology is a vividly developing topic of current research in both theoretical and experime...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems, an...
Among the known resources of quantum metrology, one of the most practical and efficient is squeezing...
Nonclassical states are essential for optics-based quantum information processing, but their fragili...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
This thesis explores various protocols which can be applied to quantum metrology, such that precisio...
The statistical error in any estimation can be reduced by repeating the measurement and averaging th...