International audienceDevelop a scalable integrated process compatible with standard CMOS technologies, to optimize light collection from quantum emitters in SiC. Applications : Technological building block for Single Photon Source, Platform for optical spin manipulation. Conclusion:1) Development of a scalable fast and costless process to design nanopillars in SiC.2) Evidence of V Si and V Si V C signal enhancement.3) Confirmation of V 1 , V 2 line polarization
Quantum information sciences offer novel capabilities in the fields of computation, data security an...
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...
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 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...
Since the discovery of peculiar phenomena in the nano-world, at the beginning of last century, our u...
The 4H-silicon carbide (SiC) shows the capability to host a large number of promising emitters for q...
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...
In the last two decades, bulk, homoepitaxial, and heteroepitaxial growth of silicon carbide (SiC) ha...
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...
Quantum information sciences offer novel capabilities in the fields of computation, data security an...
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...
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 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...
Since the discovery of peculiar phenomena in the nano-world, at the beginning of last century, our u...
The 4H-silicon carbide (SiC) shows the capability to host a large number of promising emitters for q...
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...
In the last two decades, bulk, homoepitaxial, and heteroepitaxial growth of silicon carbide (SiC) ha...
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...
Quantum information sciences offer novel capabilities in the fields of computation, data security an...
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...