Quantum entanglement offers the possibility of making measurements beyond the classical limit, however some issues still need to be overcome before it can be applied in realistic lossy systems. Recent work has used quantum Fisher information (QFI) to show that entangled coherent states (ECSs) may be useful for this purpose as they combine sub-classical phase precision capabilities with robustness (Joo et al., 2011). However, to date no effective scheme for measuring a phase in lossy systems using an ECS has been devised. Here we present a scheme that does just this. We show how one could measure a phase to a precision significantly better than that attainable by both unentangled ‘classical’ states and highly-entangled NOON states over a wid...
In optical interferometry multimode entanglement is often assumed to be the driving force behind qua...
We present a protocol that combines quantum and classical resources to increase the sensitivity of a...
Highly entangled quantum states, shared by remote parties, are vital for quantum communications and ...
In optical interferometry path-entangled states such as NOON states have shown to give quantum-enhan...
Entangled multiphoton states have the potential to provide improved measurement accuracy, but are se...
We present the theory of how to achieve phase measurements with the minimum possible variance in way...
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...
Recently, Gerry et al. [Phys. Rev. A 79, 022111 (2009)] studied the violation of the Bell-Clauser-Ho...
Empirical thesis.Bibliography: pages 79-87.1. Introduction -- 2. Loss-resistant unambiguous phase me...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
Precise interferometric measurement is vital to many scientific and technological applications. Usin...
This thesis explores various protocols which can be applied to quantum metrology, such that precisio...
We show how some entangled quantum states can be used to improve interferometric measurements. We de...
The presence of loss limits the precision of an approach to phase measurement using NOON states. A c...
In optical interferometry multimode entanglement is often assumed to be the driving force behind qua...
We present a protocol that combines quantum and classical resources to increase the sensitivity of a...
Highly entangled quantum states, shared by remote parties, are vital for quantum communications and ...
In optical interferometry path-entangled states such as NOON states have shown to give quantum-enhan...
Entangled multiphoton states have the potential to provide improved measurement accuracy, but are se...
We present the theory of how to achieve phase measurements with the minimum possible variance in way...
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...
Recently, Gerry et al. [Phys. Rev. A 79, 022111 (2009)] studied the violation of the Bell-Clauser-Ho...
Empirical thesis.Bibliography: pages 79-87.1. Introduction -- 2. Loss-resistant unambiguous phase me...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
Precise interferometric measurement is vital to many scientific and technological applications. Usin...
This thesis explores various protocols which can be applied to quantum metrology, such that precisio...
We show how some entangled quantum states can be used to improve interferometric measurements. We de...
The presence of loss limits the precision of an approach to phase measurement using NOON states. A c...
In optical interferometry multimode entanglement is often assumed to be the driving force behind qua...
We present a protocol that combines quantum and classical resources to increase the sensitivity of a...
Highly entangled quantum states, shared by remote parties, are vital for quantum communications and ...