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- W2005098238 abstract "Owing to its large bandgap of 5.5 eV, diamond can host a large variety of optically active defects (color centers). The most developed ones are two defects comprising in their structure an impurity atom (nitrogen or silicon), a vacant lattice site, and a trapped electron. These color centers are denoted as NV− and SiV−. Modern views about the structure of these defects are given in this chapter. It is illustrated how NV− spin is initialized and read-out at room temperature by means of Optically Detected Magnetic Resonance, leading to appealing applications, such as spin qubits and spin sensors. State-of-the-art and challenges of NV− and SiV− production in nanodiamond are discussed. Some aspects of excitation modalities, photophysical parameters, detection techniques with ultra-high resolution, as well as biological applications of these two centers are addressed in this chapter." @default.
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- W2005098238 date "1967-12-01" @default.
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- W2005098238 title "Optical detection of electron resonance transitions in phosphorescent quinoxaline" @default.
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