Loss is a critical roadblock to achieving photonic quantum-enhanced technologies. We explore a modular platform for implementing integrated photonics experiments and consider the effects of loss at different stages of these experiments, including state preparation, manipulation and measurement. We frame our discussion mainly in the context of quantum sensing and focus particularly on the use of loss-tolerant Holland-Burnett states for optical phase estimation. In particular, we discuss spontaneous four-wave mixing in standard birefringent fibre as a source of pure, heralded single photons and present methods of optimising such sources. We also outline a route to programmable circuits which allow the control of photonic interactions even in ...
Entangled multiphoton states have the potential to provide improved measurement accuracy, but are se...
We give a detailed discussion of optimal quantum states for optical two-mode interferometry in the p...
Due to their strict photon-number correlation, the twin beams produced in parametric down-conversion...
Loss is a critical roadblock to achieving photonic quantum-enhanced technologies. We explore a modul...
Photons have proven to be an effective test-bed for the fundamental concepts and elements of quantum...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
Single photon sources are a key building block for quantum information processing. A common approach...
In the optical sensing context one of the main challenge is to design and implement novel techniques...
Quantum mechanics establishes the ultimate limit to the scaling of the precision on any parameter, b...
This thesis is concerned with the generation of non-classical quantum states of light, the photon-le...
Measurements on states of light underpins the entire fields of classical and quantum optics. Without...
In this thesis, we demonstrate an array of photodetection theory and techniques bridging the tradit...
The aim of quantum sensing is to develop quantum methods to extract the maximum amount of informatio...
Entangled multiphoton states have the potential to provide improved measurement accuracy, but are se...
We give a detailed discussion of optimal quantum states for optical two-mode interferometry in the p...
Due to their strict photon-number correlation, the twin beams produced in parametric down-conversion...
Loss is a critical roadblock to achieving photonic quantum-enhanced technologies. We explore a modul...
Photons have proven to be an effective test-bed for the fundamental concepts and elements of quantum...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
Single photon sources are a key building block for quantum information processing. A common approach...
In the optical sensing context one of the main challenge is to design and implement novel techniques...
Quantum mechanics establishes the ultimate limit to the scaling of the precision on any parameter, b...
This thesis is concerned with the generation of non-classical quantum states of light, the photon-le...
Measurements on states of light underpins the entire fields of classical and quantum optics. Without...
In this thesis, we demonstrate an array of photodetection theory and techniques bridging the tradit...
The aim of quantum sensing is to develop quantum methods to extract the maximum amount of informatio...
Entangled multiphoton states have the potential to provide improved measurement accuracy, but are se...
We give a detailed discussion of optimal quantum states for optical two-mode interferometry in the p...
Due to their strict photon-number correlation, the twin beams produced in parametric down-conversion...