Neutral silicon vacancy (SiV 0 ) centers in diamond are promising candidates for quantum networks because of their excellent optical properties and long spin coherence times. However, spin-dependent fluorescence in such defects has been elusive due to poor understanding of the excited state fine structure and limited off-resonant spin polarization. Here we report the realization of optically detected magnetic resonance and coherent control of SiV 0 centers at cryogenic temperatures, enabled by efficient optical spin polarization via previously unreported higher-lying excited states. We assign these states as bound exciton states using group theory and density functional theory. These bound exciton states enable new control schemes fo...
Color centers in wide bandgap materials that behave as ‘artificial atoms’ are promising candidates f...
The nitrogen-vacancy (NV) center in diamond has garnered great interest over the past decade as its ...
Magnetic resonance spectroscopy is one of the most powerful spectroscopic tools for obtaining detail...
Neutral silicon-vacancy (Si-V0) centers in diamond are promising candidates for quantum network app...
We demonstrate optical spin polarization of the neutrally charged silicon-vacancy defect in diamond ...
We demonstrate optical spin polarization of the neutrally charged silicon-vacancy defect in diamond ...
The silicon-vacancy (SiV−) color center in diamond has attracted attention because of its unique opt...
Neutral silicon vacancy (SiV0) centers in diamond are promising candidates for quantum network appli...
The silicon-vacancy center in diamond offers attractive opportunities in quantum photonics due to it...
Colour centres in diamond have emerged as versatile tools for solid-state quantum technologies rangi...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
Engineering coherent systems is a central goal of quantum science. Color centers in diamond are a pr...
The neutrally-charged silicon vacancy in diamond is a promising system for quantum technologies that...
We investigate spin and optical properties of individual nitrogen-vacancy centers located within 1-1...
Nitrogen-vacancy centers in diamond typically have spin-conserving optical transitions, a feature wh...
Color centers in wide bandgap materials that behave as ‘artificial atoms’ are promising candidates f...
The nitrogen-vacancy (NV) center in diamond has garnered great interest over the past decade as its ...
Magnetic resonance spectroscopy is one of the most powerful spectroscopic tools for obtaining detail...
Neutral silicon-vacancy (Si-V0) centers in diamond are promising candidates for quantum network app...
We demonstrate optical spin polarization of the neutrally charged silicon-vacancy defect in diamond ...
We demonstrate optical spin polarization of the neutrally charged silicon-vacancy defect in diamond ...
The silicon-vacancy (SiV−) color center in diamond has attracted attention because of its unique opt...
Neutral silicon vacancy (SiV0) centers in diamond are promising candidates for quantum network appli...
The silicon-vacancy center in diamond offers attractive opportunities in quantum photonics due to it...
Colour centres in diamond have emerged as versatile tools for solid-state quantum technologies rangi...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
Engineering coherent systems is a central goal of quantum science. Color centers in diamond are a pr...
The neutrally-charged silicon vacancy in diamond is a promising system for quantum technologies that...
We investigate spin and optical properties of individual nitrogen-vacancy centers located within 1-1...
Nitrogen-vacancy centers in diamond typically have spin-conserving optical transitions, a feature wh...
Color centers in wide bandgap materials that behave as ‘artificial atoms’ are promising candidates f...
The nitrogen-vacancy (NV) center in diamond has garnered great interest over the past decade as its ...
Magnetic resonance spectroscopy is one of the most powerful spectroscopic tools for obtaining detail...