Engineering coherent systems is a central goal of quantum science. Color centers in diamond are a promising approach, with the potential to combine the coherence of atoms with the scalability of a solid state platform. We report a color center that shows insensitivity to environmental decoherence caused by phonons and electric field noise: the neutral charge state of silicon vacancy (SiV0). Through careful material engineering, we achieve over 80% conversion of implanted silicon to SiV0. SiV0 exhibits spin-lattice relaxation times approaching one minute and coherence times approaching one second. Its optical properties are excellent, with approximately 90% of its emission into the zero-phonon line and near-transform-limited optical linewid...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
Negatively charged nitrogen-vacancy (NV) centers in diamond and negatively charged silicon vacancy (...
One of the most promising platforms to implement quantum technologies are coupled electron-nuclear s...
The silicon-vacancy (SiV−) color center in diamond has attracted attention because of its unique opt...
We demonstrate optical spin polarization of the neutrally charged silicon-vacancy defect in diamond ...
The neutrally-charged silicon vacancy in diamond is a promising system for quantum technologies that...
We demonstrate optical spin polarization of the neutrally charged silicon-vacancy defect in diamond ...
The properties of the negatively charged silicon-vacancy (SiV) centre in diamond were investigated i...
The creation of single, negatively charged silicon vacancy SiV amp; 8722; centers in well defined ...
Neutral silicon-vacancy (Si-V0) centers in diamond are promising candidates for quantum network app...
Neutral silicon vacancy (SiV0) centers in diamond are promising candidates for quantum network appli...
Color centers in wide bandgap materials that behave as ‘artificial atoms’ are promising candidates f...
Spin impurities in diamond can be versatile tools for a wide range of solid-state-based quantum tech...
Neutral silicon vacancy (SiV 0 ) centers in diamond are promising candidates for quantum networks b...
The practical implementation of many quantum technologies relies on the development of robust and br...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
Negatively charged nitrogen-vacancy (NV) centers in diamond and negatively charged silicon vacancy (...
One of the most promising platforms to implement quantum technologies are coupled electron-nuclear s...
The silicon-vacancy (SiV−) color center in diamond has attracted attention because of its unique opt...
We demonstrate optical spin polarization of the neutrally charged silicon-vacancy defect in diamond ...
The neutrally-charged silicon vacancy in diamond is a promising system for quantum technologies that...
We demonstrate optical spin polarization of the neutrally charged silicon-vacancy defect in diamond ...
The properties of the negatively charged silicon-vacancy (SiV) centre in diamond were investigated i...
The creation of single, negatively charged silicon vacancy SiV amp; 8722; centers in well defined ...
Neutral silicon-vacancy (Si-V0) centers in diamond are promising candidates for quantum network app...
Neutral silicon vacancy (SiV0) centers in diamond are promising candidates for quantum network appli...
Color centers in wide bandgap materials that behave as ‘artificial atoms’ are promising candidates f...
Spin impurities in diamond can be versatile tools for a wide range of solid-state-based quantum tech...
Neutral silicon vacancy (SiV 0 ) centers in diamond are promising candidates for quantum networks b...
The practical implementation of many quantum technologies relies on the development of robust and br...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
Negatively charged nitrogen-vacancy (NV) centers in diamond and negatively charged silicon vacancy (...
One of the most promising platforms to implement quantum technologies are coupled electron-nuclear s...