We demonstrate optical spin polarization of the neutrally charged silicon-vacancy defect in diamond (SiV0), an S ¼ 1 defect which emits with a zero-phonon line at 946 nm. The spin polarization is found to be most efficient under resonant excitation, but nonzero at below-resonant energies. We measure an ensemble spin coherence time T2 > 100 μs at low-temperature, and a spin relaxation limit of T1 > 25 s. Optical spin-state initialization around 946 nm allows independent initialization of SiV0 and NV− within the same optically addressed volume, and SiV0 emits within the telecoms down-conversion band to 1550 nm: when combined with its high Debye-Waller factor, our initial results suggest that SiV0 is a promising candidate for a long-range qua...
The recently discovered negatively charged tin-vacancy centre in diamond is a promising candidate fo...
In recent years, defect centers in wide band gap semiconductors such as diamond, have received signi...
Spin impurities in diamond can be versatile tools for a wide range of solid-state-based quantum tech...
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...
Neutral silicon vacancy (SiV0) centers in diamond are promising candidates for quantum network appli...
The properties of the negatively charged silicon-vacancy (SiV) centre in diamond were investigated i...
Neutral silicon vacancy (SiV 0 ) centers in diamond are promising candidates for quantum networks b...
Engineering coherent systems is a central goal of quantum science. Color centers in diamond are a pr...
The silicon-vacancy (SiV−) color center in diamond has attracted attention because of its unique opt...
The zero-phonon line (ZPL) at 1.68 eV has been attributed to the negatively charged silicon split-va...
Neutral silicon-vacancy (Si-V0) centers in diamond are promising candidates for quantum network app...
Color centers in wide bandgap materials that behave as ‘artificial atoms’ are promising candidates f...
The silicon-vacancy center in diamond offers attractive opportunities in quantum photonics due to it...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
The recently discovered negatively charged tin-vacancy centre in diamond is a promising candidate fo...
In recent years, defect centers in wide band gap semiconductors such as diamond, have received signi...
Spin impurities in diamond can be versatile tools for a wide range of solid-state-based quantum tech...
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...
Neutral silicon vacancy (SiV0) centers in diamond are promising candidates for quantum network appli...
The properties of the negatively charged silicon-vacancy (SiV) centre in diamond were investigated i...
Neutral silicon vacancy (SiV 0 ) centers in diamond are promising candidates for quantum networks b...
Engineering coherent systems is a central goal of quantum science. Color centers in diamond are a pr...
The silicon-vacancy (SiV−) color center in diamond has attracted attention because of its unique opt...
The zero-phonon line (ZPL) at 1.68 eV has been attributed to the negatively charged silicon split-va...
Neutral silicon-vacancy (Si-V0) centers in diamond are promising candidates for quantum network app...
Color centers in wide bandgap materials that behave as ‘artificial atoms’ are promising candidates f...
The silicon-vacancy center in diamond offers attractive opportunities in quantum photonics due to it...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
The recently discovered negatively charged tin-vacancy centre in diamond is a promising candidate fo...
In recent years, defect centers in wide band gap semiconductors such as diamond, have received signi...
Spin impurities in diamond can be versatile tools for a wide range of solid-state-based quantum tech...