Low noise single-photon sources are a critical element for quantum technologies. We present a heralded single-photon source with an extremely low level of residual background photons, by implementing low-jitter detectors and electronics and a fast custom-made pulse generator controlling an optical shutter (a LiNbO3 waveguide optical switch) on the output of the source. This source has a second-order autocorrelation g((2))(0) = 0.005(7), and an output noise factor (defined as the ratio of the number of noise photons to total photons at the source output channel) of 0.25(1)%. These are the best performance characteristics reported to date
The scaling of optical quantum technologies requires efficient, on-demand sources of highly indistin...
Long distance quantum communication relies on efficient single photon sources, whose wavelength has ...
Single-photon sources are essential building blocks in quantum photonic networks, where quantum-mech...
Low noise single-photon sources are a critical element for quantum technologies. We present a herald...
Low noise single-photon sources are a critical element for quantum technologies. We present a herald...
With the recent progresses in quantum technologies, single photon sources have gained a primary rele...
We present a heralded single-photon source with a much lower level of unwanted background photons in...
Using a continuous-wave type-II optical parametric oscillator below threshold, we have demonstrated ...
The field of optical quantum information processing uses and manipulates the state of light to imple...
A single photon source is an enabling technology in device-independent quantum communication, quantu...
Single-photon sources represent a fundamental building block for optical implementations of quantum ...
True on-demand high-repetition-rate single-photon sources are highly sought after for quantum inform...
Single-photon sources represent a fundamental building block for optical implementations of quantum ...
Single photon counting, based on single photon sources and detectors, is a key ingredient for certai...
Optoelectronic devices that provide non-classical light states on demand have a broad range of appli...
The scaling of optical quantum technologies requires efficient, on-demand sources of highly indistin...
Long distance quantum communication relies on efficient single photon sources, whose wavelength has ...
Single-photon sources are essential building blocks in quantum photonic networks, where quantum-mech...
Low noise single-photon sources are a critical element for quantum technologies. We present a herald...
Low noise single-photon sources are a critical element for quantum technologies. We present a herald...
With the recent progresses in quantum technologies, single photon sources have gained a primary rele...
We present a heralded single-photon source with a much lower level of unwanted background photons in...
Using a continuous-wave type-II optical parametric oscillator below threshold, we have demonstrated ...
The field of optical quantum information processing uses and manipulates the state of light to imple...
A single photon source is an enabling technology in device-independent quantum communication, quantu...
Single-photon sources represent a fundamental building block for optical implementations of quantum ...
True on-demand high-repetition-rate single-photon sources are highly sought after for quantum inform...
Single-photon sources represent a fundamental building block for optical implementations of quantum ...
Single photon counting, based on single photon sources and detectors, is a key ingredient for certai...
Optoelectronic devices that provide non-classical light states on demand have a broad range of appli...
The scaling of optical quantum technologies requires efficient, on-demand sources of highly indistin...
Long distance quantum communication relies on efficient single photon sources, whose wavelength has ...
Single-photon sources are essential building blocks in quantum photonic networks, where quantum-mech...