Silicon photonics for the visible and near-infrared spectrum
Emerging applications in quantum information, microscopy, biosensing, depth sensing, and
augmented reality demand miniaturized components in the visible (VIS) and near-infrared …
augmented reality demand miniaturized components in the visible (VIS) and near-infrared …
Silicon Nitride Integrated Photonics from Visible to Mid‐Infrared Spectra
Abstract Silicon nitride (Si3N4) photonic integrated circuits (PICs) are of great interest due to
their extremely low propagation loss and higher integration capabilities. The number of …
their extremely low propagation loss and higher integration capabilities. The number of …
Nanoelectromechanical control of spin–photon interfaces in a hybrid quantum system on chip
Color centers (CCs) in nanostructured diamond are promising for optically linked quantum
technologies. Scaling to useful applications motivates architectures meeting the following …
technologies. Scaling to useful applications motivates architectures meeting the following …
Solid‐State Single‐Photon Sources: Recent Advances for Novel Quantum Materials
In this review, the current landscape of emergent quantum materials for quantum photonic
applications is described. The review focuses on three specific solid‐state platforms: single …
applications is described. The review focuses on three specific solid‐state platforms: single …
Synchronous micromechanically resonant programmable photonic circuits
Programmable photonic integrated circuits (PICs) are emerging as powerful tools for control
of light, with applications in quantum information processing, optical range finding, and …
of light, with applications in quantum information processing, optical range finding, and …
Room-temperature waveguide-coupled silicon single-photon avalanche diodes
Single photon detection is important for a wide range of low-light applications, including
quantum information processing, spectroscopy, and light detection and ranging (LiDAR). A …
quantum information processing, spectroscopy, and light detection and ranging (LiDAR). A …
Heterogeneous integration of spin–photon interfaces with a CMOS platform
Colour centres in diamond have emerged as a leading solid-state platform for advancing
quantum technologies, satisfying the DiVincenzo criteria and recently achieving quantum …
quantum technologies, satisfying the DiVincenzo criteria and recently achieving quantum …
Heterogeneous integration of spin-photon interfaces with a scalable CMOS platform
Heterogeneous Integration of Spin-photon Interfaces with a Scalable CMOS Platform Page 1
Heterogeneous Integration of Spin-photon Interfaces with a Scalable CMOS Platform Linsen …
Heterogeneous Integration of Spin-photon Interfaces with a Scalable CMOS Platform Linsen …
A scalable cavity-based spin–photon interface in a photonic integrated circuit
A central challenge in quantum networking is transferring quantum states between different
physical modalities, such as between flying photonic qubits and stationary quantum …
physical modalities, such as between flying photonic qubits and stationary quantum …
Coherent microwave, optical, and mechanical quantum control of spin qubits in diamond
Diamond has emerged as a highly promising platform for quantum network applications.
Color centers in diamond fulfill the fundamental requirements for quantum nodes: they …
Color centers in diamond fulfill the fundamental requirements for quantum nodes: they …