A central goal for quantum technologies is to develop platforms for precise and scalable control of individually addressable artificial atoms with efficient optical interfaces. Color centers in silicon, such as the recently-isolated carbon-related G-center, exhibit emission directly into the telecommunications O-band and can leverage the maturity of silicon-on-insulator photonics. We demonstrate the generation, individual addressing, and spectral trimming of G-center artificial atoms in a silicon-on-insulator photonic integrated circuit platform. Focusing on the neutral charge state emission at 1278 nm, we observe waveguide-coupled single photon emission with narrow inhomogeneous distribution with standard deviation of 1.1 nm, excited state...
Quantum photonics is a promising technology for implementing quantum information tasks. We demonstra...
Silicon is the most scalable optoelectronic material but has suffered from its inability to generate...
Near-infrared color centers in silicon are emerging candidates for on-chip integrated quantum emitte...
Artificial atoms in solids have emerged as leading systems for quantum information processing tasks ...
Given its potential for integration and scalability, silicon is likely to be a key platform for larg...
A highly promising route to scale millions of qubits is to use quantum photonic integrated circuits ...
We report the detection of individual emitters in silicon belonging to seven different families of o...
The ability to shape photon emission facilitates strong photon-mediated interactions between dispara...
International audienceWe report the fabrication of G centers in silicon with an areal density compat...
Scalable quantum photonic systems require efficient single photon sources coupled to integrated phot...
The ability to shape photon emission facilitates strong photon-mediated interactions between dispara...
Quantum-based communication systems can potentially achieve the ultimate security from eavesdropping...
Integrated silicon photonics allows for the routine control and detection of light down to the singl...
International audienceSilicon is the most widely used material in microelectronic devices; integrati...
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...
Silicon is the most scalable optoelectronic material but has suffered from its inability to generate...
Near-infrared color centers in silicon are emerging candidates for on-chip integrated quantum emitte...
Artificial atoms in solids have emerged as leading systems for quantum information processing tasks ...
Given its potential for integration and scalability, silicon is likely to be a key platform for larg...
A highly promising route to scale millions of qubits is to use quantum photonic integrated circuits ...
We report the detection of individual emitters in silicon belonging to seven different families of o...
The ability to shape photon emission facilitates strong photon-mediated interactions between dispara...
International audienceWe report the fabrication of G centers in silicon with an areal density compat...
Scalable quantum photonic systems require efficient single photon sources coupled to integrated phot...
The ability to shape photon emission facilitates strong photon-mediated interactions between dispara...
Quantum-based communication systems can potentially achieve the ultimate security from eavesdropping...
Integrated silicon photonics allows for the routine control and detection of light down to the singl...
International audienceSilicon is the most widely used material in microelectronic devices; integrati...
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...
Silicon is the most scalable optoelectronic material but has suffered from its inability to generate...
Near-infrared color centers in silicon are emerging candidates for on-chip integrated quantum emitte...