Silicon carbide is a promising platform for single photon sources, quantum bits (qubits), and nanoscale sensors based on individual color centers. Toward this goal, we develop a scalable array of nanopillars incorporating single silicon vacancy centers in 4H-SiC, readily available for efficient interfacing with free-space objective and lensed-fibers. A commercially obtained substrate is irradiated with 2 MeV electron beams to create vacancies. Subsequent lithographic process forms 800 nm tall nanopillars with 400–1400 nm diameters. We obtain high collection efficiency of up to 22 kcounts/s optical saturation rates from a single silicon vacancy center while preserving the single photon emission and the optically induced electron-spin polariz...
Since the discovery of peculiar phenomena in the nano-world, at the beginning of last century, our u...
Defects are common in many materials and some were regarded for years as detrimental. Recently with ...
Defects are common in many materials and some were regarded for years as detrimental. Recently with ...
Silicon carbide is a promising platform for single photon sources, quantum bits (qubits), and nanosc...
Silicon carbide is a promising platform for single photon sources, quantum bits (qubits), and nanosc...
Silicon carbide is a promising platform for single photon sources, quantum bits (qubits), and nanosc...
A scalable array of nanopillars incorporating single silicon vacancy centers is developed in 4H-SiC,...
Silicon carbide (SiC) has recently been investigated as an alternative material to host deep optical...
Silicon carbide (SiC) has recently been investigated as an alternative material to host deep optical...
International audienceDevelop a scalable integrated process compatible with standard CMOS technologi...
The major barrier for optical quantum information technologies is the absence of reliable single pho...
The major barrier for optical quantum information technologies is the absence of reliable single pho...
: The major barrier for optical quantum information technologies is the absence of reliable single p...
This paper summarizes key findings in single-photon generation from deep level defects in silicon ca...
Silicon carbide (SiC) has recently been investigated as an alternative material to host deep optical...
Since the discovery of peculiar phenomena in the nano-world, at the beginning of last century, our u...
Defects are common in many materials and some were regarded for years as detrimental. Recently with ...
Defects are common in many materials and some were regarded for years as detrimental. Recently with ...
Silicon carbide is a promising platform for single photon sources, quantum bits (qubits), and nanosc...
Silicon carbide is a promising platform for single photon sources, quantum bits (qubits), and nanosc...
Silicon carbide is a promising platform for single photon sources, quantum bits (qubits), and nanosc...
A scalable array of nanopillars incorporating single silicon vacancy centers is developed in 4H-SiC,...
Silicon carbide (SiC) has recently been investigated as an alternative material to host deep optical...
Silicon carbide (SiC) has recently been investigated as an alternative material to host deep optical...
International audienceDevelop a scalable integrated process compatible with standard CMOS technologi...
The major barrier for optical quantum information technologies is the absence of reliable single pho...
The major barrier for optical quantum information technologies is the absence of reliable single pho...
: The major barrier for optical quantum information technologies is the absence of reliable single p...
This paper summarizes key findings in single-photon generation from deep level defects in silicon ca...
Silicon carbide (SiC) has recently been investigated as an alternative material to host deep optical...
Since the discovery of peculiar phenomena in the nano-world, at the beginning of last century, our u...
Defects are common in many materials and some were regarded for years as detrimental. Recently with ...
Defects are common in many materials and some were regarded for years as detrimental. Recently with ...