We introduce the notion of fault-tolerant quantum metrology to overcome noise beyond our control, associated with sensing the parameter, by reducing the noise in operations under our control, associated with preparing and measuring probes and ancillae. To that end, we introduce noise thresholds to quantify the noise resilience of parameter estimation schemes. We demonstrate improved noise thresholds over the non-fault-tolerant schemes. We use quantum Reed-Muller codes to retrieve more information about a single phase parameter being estimated in the presence of full-rank Pauli noise. Using only error detection, as opposed to error correction, allows us to retrieve higher thresholds. We show that better devices, which can be engineered, can ...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems, an...
We derive fundamental bounds on the maximal achievable precision in multiparameter noisy quantum met...
This thesis explores various protocols which can be applied to quantum metrology, such that precisio...
Quantum metrology with entangled resources aims to achieve sensitivity beyond the standard quantum l...
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 ...
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 ...
Quantum computers have the potential to solve several interesting problems in polynomial time for w...
Quantum metrology, which studies parameter estimation in quantum systems, has many applications in s...
We consider quantum metrology in noisy environments, where the effect of noise and decoherence limit...
A quantum computer -- i.e., a computer capable of manipulating data in quantum superposition -- woul...
The statistical error in any estimation can be reduced by repeating the measurement and averaging th...
Quantum metrology is a vividly developing topic of current research in both theoretical and experime...
© 2019 American Physical Society. Quantum systems can be exploited for disruptive technologies but i...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems, an...
We derive fundamental bounds on the maximal achievable precision in multiparameter noisy quantum met...
This thesis explores various protocols which can be applied to quantum metrology, such that precisio...
Quantum metrology with entangled resources aims to achieve sensitivity beyond the standard quantum l...
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 ...
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 ...
Quantum computers have the potential to solve several interesting problems in polynomial time for w...
Quantum metrology, which studies parameter estimation in quantum systems, has many applications in s...
We consider quantum metrology in noisy environments, where the effect of noise and decoherence limit...
A quantum computer -- i.e., a computer capable of manipulating data in quantum superposition -- woul...
The statistical error in any estimation can be reduced by repeating the measurement and averaging th...
Quantum metrology is a vividly developing topic of current research in both theoretical and experime...
© 2019 American Physical Society. Quantum systems can be exploited for disruptive technologies but i...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems, an...
We derive fundamental bounds on the maximal achievable precision in multiparameter noisy quantum met...
This thesis explores various protocols which can be applied to quantum metrology, such that precisio...