We demonstrate the generation of quantum-correlated photon pairs combined with the spectral filtering of the pump field by more than 95 dB on a single silicon chip using electrically tunable ring resonators and passive Bragg reflectors. Moreover, we perform the demultiplexing and routing of signal and idler photons after transferring them via an optical fiber to a second identical chip. Nonclassical two-photon temporal correlations with a coincidence-to-accidental ratio of 50 are measured without further off-chip filtering. Our system, fabricated with high yield and reproducibility in a CMOS-compatible process, paves the way toward large-scale quantum photonic circuits by allowing sources and detectors of single photons to be integrated on ...
Quantum information can provide many advantages by exploiting quantum mechanics properties. The qubi...
We report an integrated photon pair source based on a CMOS-compatible microring resonator that gener...
Large-scale integrated quantum photonic technologies1, 2 will require on-chip integration of identic...
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...
A wavelength-tunable, silicon photon-pair source based on spontaneous four-wave mixing, integrated w...
We demonstrate a CMOS electronic-photonic photon-pair source with integrated feedback-controlled fre...
The third-order nonlinearity of silicon gives rise to a spontaneous four-wave mixing process in whic...
Considerable research work is being devoted to the integration of quantum optical components on a si...
Integrated quantum photonics relies critically on the purity, scalability, integrability, and flexib...
Compact silicon integrated devices, such as micro-ring resonators, have recently been demonstrated a...
Entanglement—one of the most delicate phenomena in nature—is an essential resource for quantum infor...
We demonstrate an on-chip source of correlated photons with spatial demultiplexing of signal and idl...
Quantum information can provide many advantages by exploiting quantum mechanics properties. The qubi...
We report an integrated photon pair source based on a CMOS-compatible microring resonator that gener...
Large-scale integrated quantum photonic technologies1, 2 will require on-chip integration of identic...
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...
A wavelength-tunable, silicon photon-pair source based on spontaneous four-wave mixing, integrated w...
We demonstrate a CMOS electronic-photonic photon-pair source with integrated feedback-controlled fre...
The third-order nonlinearity of silicon gives rise to a spontaneous four-wave mixing process in whic...
Considerable research work is being devoted to the integration of quantum optical components on a si...
Integrated quantum photonics relies critically on the purity, scalability, integrability, and flexib...
Compact silicon integrated devices, such as micro-ring resonators, have recently been demonstrated a...
Entanglement—one of the most delicate phenomena in nature—is an essential resource for quantum infor...
We demonstrate an on-chip source of correlated photons with spatial demultiplexing of signal and idl...
Quantum information can provide many advantages by exploiting quantum mechanics properties. The qubi...
We report an integrated photon pair source based on a CMOS-compatible microring resonator that gener...
Large-scale integrated quantum photonic technologies1, 2 will require on-chip integration of identic...