The non-deterministic nature of photon sources is a key limitation for single-photon quantum processors. Spatial multiplexing overcomes this by enhancing the heralded single-photon yield without enhancing the output noise. Here the intrinsic statistical limit of an individual source is surpassed by spatially multiplexing two monolithic silicon-based correlated photon pair sources in the telecommunications band, demonstrating a 62.4% increase in the heralded single-photon output without an increase in unwanted multipair generation. We further demonstrate the scalability of this scheme by multiplexing photons generated in two waveguides pumped via an integrated coupler with a 63.1% increase in the heralded photon rate. This demonstration pave...
Single-photon sources represent a fundamental building block for optical implementations of quantum ...
The deterministic generation of a single excitation of the electromagnetic field in a predefined spe...
We demonstrate the generation of quantum-correlated photon pairs combined with the spectral filterin...
Bright sources of on-demand single photons are a fundamental resource [1], required for linear optic...
It is a fundamental challenge in quantum optics to deterministically generate indistinguishable sing...
We demonstrate spatial multiplexing of two heralded single photon sources created by bi-directionall...
We demonstrate integrated spatial multiplexing of heralded single photons generated from a single 96...
The field of optical quantum information processing uses and manipulates the state of light to imple...
Advances in Scalable Hardware P atforms for Quantum Computing 737. WE-Heraeus-Seminar 11 - 13 Januar...
We experimentally demonstrate spatial multiplexing of monolithic heralded single photon sources base...
We discuss the hybrid integration of multiple components for the production of telecom band single p...
Scaling-up optical quantum technologies requires a combination of highly efficient multi-photon sour...
Practical quantum photonic applications require on-demand single photon sources. As one possible sol...
Parametric single-photon sources are well suited for large-scale quantum networks due to their poten...
We demonstrate generation of heralded single photons in silica photonic chips with a preparation eff...
Single-photon sources represent a fundamental building block for optical implementations of quantum ...
The deterministic generation of a single excitation of the electromagnetic field in a predefined spe...
We demonstrate the generation of quantum-correlated photon pairs combined with the spectral filterin...
Bright sources of on-demand single photons are a fundamental resource [1], required for linear optic...
It is a fundamental challenge in quantum optics to deterministically generate indistinguishable sing...
We demonstrate spatial multiplexing of two heralded single photon sources created by bi-directionall...
We demonstrate integrated spatial multiplexing of heralded single photons generated from a single 96...
The field of optical quantum information processing uses and manipulates the state of light to imple...
Advances in Scalable Hardware P atforms for Quantum Computing 737. WE-Heraeus-Seminar 11 - 13 Januar...
We experimentally demonstrate spatial multiplexing of monolithic heralded single photon sources base...
We discuss the hybrid integration of multiple components for the production of telecom band single p...
Scaling-up optical quantum technologies requires a combination of highly efficient multi-photon sour...
Practical quantum photonic applications require on-demand single photon sources. As one possible sol...
Parametric single-photon sources are well suited for large-scale quantum networks due to their poten...
We demonstrate generation of heralded single photons in silica photonic chips with a preparation eff...
Single-photon sources represent a fundamental building block for optical implementations of quantum ...
The deterministic generation of a single excitation of the electromagnetic field in a predefined spe...
We demonstrate the generation of quantum-correlated photon pairs combined with the spectral filterin...