We consider the role of detection noise in quantum-enhanced metrology in collective spin systems, and derive a fundamental bound for the maximum obtainable sensitivity for a given level of added detection noise. We then present an interaction-based readout utilising the commonly used one-axis twisting scheme that approaches this bound for states generated via several commonly considered methods of generating quantum enhancement, such as one-axis twisting, two-axis counter-twisting, twist-and-turn squeezing, quantum non-demolition measurements, and adiabatically scanning through a quantum phase transition. We demonstrate that this method performs significantly better than other recently proposed interaction-based readouts. These results may ...
Quantum metrology uses quantum features such as entanglement and squeezing to improve the sensitivit...
This thesis aims to help in bridging the gap between the ideals of theoretical quantum metrology and...
Quantum metrology uses quantum features such as entanglement and squeezing to improve the sensitivit...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
Useful quantummetrology requires nonclassical states with a high particle number and (close to) the ...
The use of multiparticle entangled states has the potential to drastically increase the sensitivity ...
Quantum metrology protocols using entangled states of large spin ensembles attempt to achieve measur...
We introduce the notion of fault-tolerant quantum metrology to overcome noise beyond our control, as...
We describe a method to enhance the sensitivity of precision measurements that takes advantage of th...
Large ensembles of uncorrelated atoms are extensively used as precise sensors of time, rotation, and...
Quantum metrology is a vividly developing topic of current research in both theoretical and experime...
Entanglement-enhanced atom interferometry has the potential of surpassing the standard quantum limit...
Quantum metrology has many important applications in science and technology, ranging from frequency ...
Quantum metrology has many important applications in science and technology, ranging from frequency ...
Noise properties of an idealized atomic magnetometer that utilizes spin squeezing induced by a conti...
Quantum metrology uses quantum features such as entanglement and squeezing to improve the sensitivit...
This thesis aims to help in bridging the gap between the ideals of theoretical quantum metrology and...
Quantum metrology uses quantum features such as entanglement and squeezing to improve the sensitivit...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
Useful quantummetrology requires nonclassical states with a high particle number and (close to) the ...
The use of multiparticle entangled states has the potential to drastically increase the sensitivity ...
Quantum metrology protocols using entangled states of large spin ensembles attempt to achieve measur...
We introduce the notion of fault-tolerant quantum metrology to overcome noise beyond our control, as...
We describe a method to enhance the sensitivity of precision measurements that takes advantage of th...
Large ensembles of uncorrelated atoms are extensively used as precise sensors of time, rotation, and...
Quantum metrology is a vividly developing topic of current research in both theoretical and experime...
Entanglement-enhanced atom interferometry has the potential of surpassing the standard quantum limit...
Quantum metrology has many important applications in science and technology, ranging from frequency ...
Quantum metrology has many important applications in science and technology, ranging from frequency ...
Noise properties of an idealized atomic magnetometer that utilizes spin squeezing induced by a conti...
Quantum metrology uses quantum features such as entanglement and squeezing to improve the sensitivit...
This thesis aims to help in bridging the gap between the ideals of theoretical quantum metrology and...
Quantum metrology uses quantum features such as entanglement and squeezing to improve the sensitivit...