Entanglement is arguably the key quantum-mechanical resource for improving the performance of communication, precision measurement and computing systems beyond their classical-physics limits. Yet entanglement is fragile, being very susceptible to destruction by the decoherence arising from loss and noise. Surprisingly, Lloyd (2008 Science 321 1463) recently proved that a very large performance gain accrues from use of entanglement in single-photon target detection within an entanglement-destroying lossy, noisy environment when compared to what can be achieved with unentangled single-photon states. We extend Lloyd's analysis to the full multiphoton input Hilbert space. We show that the performance of Lloyd's single-photon'quantum illuminatio...
We investigate performances of pure continuous variable states in discriminating thermal and identit...
Harnessing the unique properties of quantum mechanics offers the possibility of delivering alternati...
We present a detailed analysis of the Bell measurement scheme proposed in Lee et al. [Phys. Rev. Let...
An optical transmitter irradiates a target region containing a bright thermal-noise bath in which a ...
An optical transmitter irradiates a target region containing a bright thermal-noise bath in which a ...
Quantum illumination is a technique for detecting the presence of a target in a noisy environment by...
We report the first experimental demonstration of quantum illumination’s signal-to-noise ratio advan...
Quantum target detection aims to utilise quantum technologies to achieve performances in target dete...
In optical interferometry multimode entanglement is often assumed to be the driving force behind qua...
Nonclassical states are essential for optics-based quantum information processing, but their fragili...
Quantum metrology utilizes nonclassical resources, such as entanglement or squeezed light, to realiz...
Due to the difficulties of implementing joint measurements, quantum illumination schemes that are ba...
With the aim to loosen the entanglement requirements of quantum illumination, we study the performan...
Coherent states of the quantum electromagnetic field, the quantum description of ideal laser light, ...
The advantages of using quantum states of light for object detection are often highlighted in scheme...
We investigate performances of pure continuous variable states in discriminating thermal and identit...
Harnessing the unique properties of quantum mechanics offers the possibility of delivering alternati...
We present a detailed analysis of the Bell measurement scheme proposed in Lee et al. [Phys. Rev. Let...
An optical transmitter irradiates a target region containing a bright thermal-noise bath in which a ...
An optical transmitter irradiates a target region containing a bright thermal-noise bath in which a ...
Quantum illumination is a technique for detecting the presence of a target in a noisy environment by...
We report the first experimental demonstration of quantum illumination’s signal-to-noise ratio advan...
Quantum target detection aims to utilise quantum technologies to achieve performances in target dete...
In optical interferometry multimode entanglement is often assumed to be the driving force behind qua...
Nonclassical states are essential for optics-based quantum information processing, but their fragili...
Quantum metrology utilizes nonclassical resources, such as entanglement or squeezed light, to realiz...
Due to the difficulties of implementing joint measurements, quantum illumination schemes that are ba...
With the aim to loosen the entanglement requirements of quantum illumination, we study the performan...
Coherent states of the quantum electromagnetic field, the quantum description of ideal laser light, ...
The advantages of using quantum states of light for object detection are often highlighted in scheme...
We investigate performances of pure continuous variable states in discriminating thermal and identit...
Harnessing the unique properties of quantum mechanics offers the possibility of delivering alternati...
We present a detailed analysis of the Bell measurement scheme proposed in Lee et al. [Phys. Rev. Let...