Integrated quantum photonics provides a scalable platform for the generation, manipulation, and detection of optical quantum states by confining light inside miniaturized waveguide circuits. Here, we show the generation, manipulation, and interferometric stage of homodyne detection of nonclassical light on a single device, a key step toward a fully integrated approach to quantum information with continuous variables. We use a dynamically reconfigurable lithium niobate waveguide network to generate and characterize squeezed vacuum and two-mode entangled states, key resources for several quantum communication and computing protocols. We measure a squeezing level of − 1.38 ± 0.04 dB and demonstrate entanglement by verifying an inseparability c...
We describe a generalization of the cluster-state model of quantum computation to continuous-variabl...
Entanglement is the quantum resource at the heart of most protocols of quantum Information, allowing...
The aim of this thesis was to develop photonic entanglement sources and study their implementation i...
Entanglement is an essential feature of quantum theory and the core of the majority of quantum infor...
Encoding quantum information in continuous variables, as the quadrature of electromagnetic fields, i...
International audienceWe demonstrate a squeezing experiment exploiting the association of integrated...
In quantum information science and technology, two traditionally-separated ways of encoding informat...
In quantum information science and technology, two traditionally-separated ways of encoding informat...
Photonic quantum technology can be enhanced by monolithic fabrication of both the underpinning quant...
We report on the generation of entangled states of light between the wavelengths 810 and 1550 nm in ...
Entanglement drives nearly all proposed quantum information technologies. The suppression of the unc...
Quantum optical technologies promise advances in sensing, computing, and communication. A key resour...
Continuous variable entanglement is a fundamental resource for many quantum information tasks. Impor...
One of today’s challenges to realise computing based on quantum mechanics is to reliably and scalabl...
Beyond the use of genuine monolithic integrated optical platforms, we report here a hybrid strategy ...
We describe a generalization of the cluster-state model of quantum computation to continuous-variabl...
Entanglement is the quantum resource at the heart of most protocols of quantum Information, allowing...
The aim of this thesis was to develop photonic entanglement sources and study their implementation i...
Entanglement is an essential feature of quantum theory and the core of the majority of quantum infor...
Encoding quantum information in continuous variables, as the quadrature of electromagnetic fields, i...
International audienceWe demonstrate a squeezing experiment exploiting the association of integrated...
In quantum information science and technology, two traditionally-separated ways of encoding informat...
In quantum information science and technology, two traditionally-separated ways of encoding informat...
Photonic quantum technology can be enhanced by monolithic fabrication of both the underpinning quant...
We report on the generation of entangled states of light between the wavelengths 810 and 1550 nm in ...
Entanglement drives nearly all proposed quantum information technologies. The suppression of the unc...
Quantum optical technologies promise advances in sensing, computing, and communication. A key resour...
Continuous variable entanglement is a fundamental resource for many quantum information tasks. Impor...
One of today’s challenges to realise computing based on quantum mechanics is to reliably and scalabl...
Beyond the use of genuine monolithic integrated optical platforms, we report here a hybrid strategy ...
We describe a generalization of the cluster-state model of quantum computation to continuous-variabl...
Entanglement is the quantum resource at the heart of most protocols of quantum Information, allowing...
The aim of this thesis was to develop photonic entanglement sources and study their implementation i...