Harnessing the unique properties of quantum mechanics offers the possibility of delivering alternative technologies that can fundamentally outperform their classical counterparts. These technologies deliver advantages only when components operate with performance beyond specific thresholds. For optical quantum metrology, the biggest challenge that impacts on performance thresholds is optical loss. Here, we demonstrate how including an optical delay and an optical switch in a feed-forward configuration with a stable and efficient correlated photon-pair source reduces the detector efficiency required to enable quantum-enhanced sensing down to the detection level of single photons and without postselection. When the switch is active, we observ...
In this paper, we use the nonlinear generator of dynamics of the individual quantum trajectories of ...
By exploiting the quantised nature of light, we demonstrate a sub-shot-noise scanning optical transm...
In optical interferometry multimode entanglement is often assumed to be the driving force behind qua...
Sub-shot-noise performance in transmission measurements can be achieved in optical quantum metrology...
© 2015 American Physical Society. Quantum number-path entanglement is a resource for supersensitive ...
Engineering apparatus that harness quantum theory promises to offer practical advantages over curren...
Photon-number squeezing and correlations enable measurement of absorption with an accuracy exceeding...
© 2017 American Physical Society. Quantum number-path entanglement is a resource for supersensitive ...
Quantum number-path entanglement is a resource for supersensitive quantum metrology and in particula...
Entanglement is arguably the key quantum-mechanical resource for improving the performance of commun...
Quantum metrology exploits quantum correlations to make precise measurements with limited particle n...
One of the weaknesses of quantum optical state postselection schemes is the low success probability....
The quantised nature of the electromagnetic field sets the classical limit to the sensitivity of pos...
Phase measurement using a lossless Mach-Zehnder interferometer with certain entangled N-photon state...
As information carriers in quantum computing, photonic qubits have the advantage of undergoing negli...
In this paper, we use the nonlinear generator of dynamics of the individual quantum trajectories of ...
By exploiting the quantised nature of light, we demonstrate a sub-shot-noise scanning optical transm...
In optical interferometry multimode entanglement is often assumed to be the driving force behind qua...
Sub-shot-noise performance in transmission measurements can be achieved in optical quantum metrology...
© 2015 American Physical Society. Quantum number-path entanglement is a resource for supersensitive ...
Engineering apparatus that harness quantum theory promises to offer practical advantages over curren...
Photon-number squeezing and correlations enable measurement of absorption with an accuracy exceeding...
© 2017 American Physical Society. Quantum number-path entanglement is a resource for supersensitive ...
Quantum number-path entanglement is a resource for supersensitive quantum metrology and in particula...
Entanglement is arguably the key quantum-mechanical resource for improving the performance of commun...
Quantum metrology exploits quantum correlations to make precise measurements with limited particle n...
One of the weaknesses of quantum optical state postselection schemes is the low success probability....
The quantised nature of the electromagnetic field sets the classical limit to the sensitivity of pos...
Phase measurement using a lossless Mach-Zehnder interferometer with certain entangled N-photon state...
As information carriers in quantum computing, photonic qubits have the advantage of undergoing negli...
In this paper, we use the nonlinear generator of dynamics of the individual quantum trajectories of ...
By exploiting the quantised nature of light, we demonstrate a sub-shot-noise scanning optical transm...
In optical interferometry multimode entanglement is often assumed to be the driving force behind qua...