Efficient generation and control of quantum light on a chip is very important to achieve scalable quantum photonic systems. Solid-state quantum emitters can generate single photons with high efficiency, while silicon photonic circuits can manipulate them in an integrated device structure. Combining these two material platforms, therefore, enable us to utilize the advantages of both systems and make feasible integrated quantum photonic devices. We demonstrate hybrid integration of solid-state quantum dots to a silicon photonic device by using a pick-and-place technique and perform Hanbury-Brown and Twiss experiments on the silicon chip with integrated quantum emitters
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
Semiconductor quantum dots are crucial parts of the photonic quantum technology toolbox because they...
Integrated quantum photonics is now seen as one of the promising approaches to realize scalable quan...
Efficient generation and control of quantum light on a chip is very important to achieve scalable qu...
Scalable quantum photonic systems require efficient single photon sources coupled to integrated phot...
Integrating quantum emitters with photonic circuits is important to achieve integrated quantum photo...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
Fundamental to integrated photonic quantum computing is an on-chip method for routing and modulating...
Quantum photonics is a promising technology for implementing quantum information tasks. We demonstra...
Solid-state quantum emitters provide efficient sources of single photons. However, controlling the r...
Silicon photonics is a powerful platform for implementing large-scale photonic integrated circuits (...
Quantum dots provide a bright source of single photons with high purity and indistinguishability, br...
Quantum photonics has recently attracted a lot of attention for its disruptive potential in emerging...
Non-classical light sources offer a myriad of possibilities in both fundamental science and commerci...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
Semiconductor quantum dots are crucial parts of the photonic quantum technology toolbox because they...
Integrated quantum photonics is now seen as one of the promising approaches to realize scalable quan...
Efficient generation and control of quantum light on a chip is very important to achieve scalable qu...
Scalable quantum photonic systems require efficient single photon sources coupled to integrated phot...
Integrating quantum emitters with photonic circuits is important to achieve integrated quantum photo...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
Fundamental to integrated photonic quantum computing is an on-chip method for routing and modulating...
Quantum photonics is a promising technology for implementing quantum information tasks. We demonstra...
Solid-state quantum emitters provide efficient sources of single photons. However, controlling the r...
Silicon photonics is a powerful platform for implementing large-scale photonic integrated circuits (...
Quantum dots provide a bright source of single photons with high purity and indistinguishability, br...
Quantum photonics has recently attracted a lot of attention for its disruptive potential in emerging...
Non-classical light sources offer a myriad of possibilities in both fundamental science and commerci...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
Semiconductor quantum dots are crucial parts of the photonic quantum technology toolbox because they...
Integrated quantum photonics is now seen as one of the promising approaches to realize scalable quan...