We use classical stimulated four-wave mixing to directly characterize quantum spectral correlations generated in a silicon nanowire for two different pump durations. Signal to noise is increased and acquisition time reduced compared to coincidence detectio
Quantum protocols, which exploit non-classical correlations produced by quantum light sources, have ...
We study the random walk of multiple photons in a massively multichannel system. The network consist...
We generate correlated photons with 600 nm spectral distance via intermodal four wave mixing in sili...
The growing requirement for photon pairs with specific spectral correlations in quantum optics exper...
Compact silicon integrated devices, such as micro-ring resonators, have recently been demonstrated a...
With unprecedented resolution we measure the joint spectral density of photon pairs that would be ge...
With unprecedented resolution we measure the joint spectral density of photon pairs that would be ge...
In quantum photonics, the requirement for photon pairs with specific quantum states has led to a dem...
Silicon micro-ring resonators have been demonstrated to be potential "on-chip" efficient sources of ...
Integrated structures, such as micro-ring resonators, have been shown to have potential as “on- chip...
We present an experimental set-up for measuring spectral and temporal nonlinear responses of silicon...
We study, both theoretically and experimentally, emission of correlated photon-pairs by spontaneous ...
We demonstrate the generation of quantum-correlated photon pairs combined with the spectral filterin...
We demonstrate the generation of quantum-correlated photon pairs combined with the spectral filterin...
: We reveal the generation of a broadband (> 1.9 THz) bi-photon quantum frequency comb (QFC) in a...
Quantum protocols, which exploit non-classical correlations produced by quantum light sources, have ...
We study the random walk of multiple photons in a massively multichannel system. The network consist...
We generate correlated photons with 600 nm spectral distance via intermodal four wave mixing in sili...
The growing requirement for photon pairs with specific spectral correlations in quantum optics exper...
Compact silicon integrated devices, such as micro-ring resonators, have recently been demonstrated a...
With unprecedented resolution we measure the joint spectral density of photon pairs that would be ge...
With unprecedented resolution we measure the joint spectral density of photon pairs that would be ge...
In quantum photonics, the requirement for photon pairs with specific quantum states has led to a dem...
Silicon micro-ring resonators have been demonstrated to be potential "on-chip" efficient sources of ...
Integrated structures, such as micro-ring resonators, have been shown to have potential as “on- chip...
We present an experimental set-up for measuring spectral and temporal nonlinear responses of silicon...
We study, both theoretically and experimentally, emission of correlated photon-pairs by spontaneous ...
We demonstrate the generation of quantum-correlated photon pairs combined with the spectral filterin...
We demonstrate the generation of quantum-correlated photon pairs combined with the spectral filterin...
: We reveal the generation of a broadband (> 1.9 THz) bi-photon quantum frequency comb (QFC) in a...
Quantum protocols, which exploit non-classical correlations produced by quantum light sources, have ...
We study the random walk of multiple photons in a massively multichannel system. The network consist...
We generate correlated photons with 600 nm spectral distance via intermodal four wave mixing in sili...