Efficient on-chip entangled photon pair generation at telecom wavelengths is an integral aspect of emerging quantum optical technologies, particularly for quantum communication and computing. However, moving to shorter wavelengths enables the use of more accessible silicon detector technology and opens up applications in imaging and spectroscopy. Here, we present high brightness ($(1.6 \pm 0.3) \times 10^{9}$ pairs/mW/nm) visible-near-IR photon pair generation in a periodically poled lithium niobate nanophotonic waveguide. The degenerate spectrum of the photon pairs is centered at 811 nm with a bandwidth of 117 nm. The measured on-chip source efficiency of $(2.3\pm 0.5) \times 10^{11}$ pairs/mW is on par with source efficiencies at telecom ...
International audienceIntegrated optical components on lithium niobate play a major role in standard...
Quantum frequency conversion (QFC) between the visible and telecom is a key functionality to connect...
Ion-sliced thin-film lithium niobate (LN) compact waveguide technology has facilitated the resurgenc...
Efficient on-chip entangled photon pair generation at telecom wavelengths is an integral aspect of e...
Existing nonlinear-optic implementations of pure, unfiltered heralded single-photon sources do not o...
Photon-pair sources based on thin film lithium niobate on insulator technology have a great potentia...
International audienceWe report on a new kind of correlated photon-pair source based on a waveguide ...
We experimentally demonstrate a visible light thin-film lithium niobate modulator at 532 nm. The wav...
Thin-film lithium niobate (TFLN) is an emerging platform for compact, low-power nonlinear-optical de...
Multi-wavelength quantum light sources, especially at telecom band, are extremely desired in quantum...
Mid-infrared spectroscopy, an important and widespread technique for sensing molecules, has encounte...
In the past few years, the lithium niobate on insulator (LNOI) platform has revolutionized lithium n...
Improving the temporal resolution of single photon detectors has an impact on many applications, suc...
Spontaneous parametric down-conversion is an essential tool for a quantum light source in the infrar...
We demonstrate a photonic crystal nanolaser exhibiting an ultra-low threshold of 730 nA at telecom w...
International audienceIntegrated optical components on lithium niobate play a major role in standard...
Quantum frequency conversion (QFC) between the visible and telecom is a key functionality to connect...
Ion-sliced thin-film lithium niobate (LN) compact waveguide technology has facilitated the resurgenc...
Efficient on-chip entangled photon pair generation at telecom wavelengths is an integral aspect of e...
Existing nonlinear-optic implementations of pure, unfiltered heralded single-photon sources do not o...
Photon-pair sources based on thin film lithium niobate on insulator technology have a great potentia...
International audienceWe report on a new kind of correlated photon-pair source based on a waveguide ...
We experimentally demonstrate a visible light thin-film lithium niobate modulator at 532 nm. The wav...
Thin-film lithium niobate (TFLN) is an emerging platform for compact, low-power nonlinear-optical de...
Multi-wavelength quantum light sources, especially at telecom band, are extremely desired in quantum...
Mid-infrared spectroscopy, an important and widespread technique for sensing molecules, has encounte...
In the past few years, the lithium niobate on insulator (LNOI) platform has revolutionized lithium n...
Improving the temporal resolution of single photon detectors has an impact on many applications, suc...
Spontaneous parametric down-conversion is an essential tool for a quantum light source in the infrar...
We demonstrate a photonic crystal nanolaser exhibiting an ultra-low threshold of 730 nA at telecom w...
International audienceIntegrated optical components on lithium niobate play a major role in standard...
Quantum frequency conversion (QFC) between the visible and telecom is a key functionality to connect...
Ion-sliced thin-film lithium niobate (LN) compact waveguide technology has facilitated the resurgenc...