Photoluminescence of nitrogen-vacancy and silicon-vacancy color centers in phosphorus-doped diamond at room andhigher temperatures

Florian Sledz, Savino Piccolomo,Assegid M. Flatae, S. Lagomarsino, Robert Rechenberg

arXiv (Cornell University)(2021)

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摘要
Phosphorus-doped diamond is relevant for applications in sensing,optoelectronics and quantum photonics, since the unique optical properties of color centers in diamond can be combined with the n-type conductivity attained by the inclusion of phosphorus. Here, we investigate the photoluminescence signal of the nitrogen-vacancy and silicon-vacancy color centers in phosphorus-doped diamond as a function of temperature starting from ambient conditions up to about 100◦ Celsius, focusing on the zero-phonon line (ZPL). We find that the wavelength and width of the ZPL of the two color centers exhibit a comparable dependence on temperature, despite the strong difference in the photoluminescence spectra. Moreover, the temperature sensitivity of the ZPL of the silicon-vacancy center is not significantly affected by phosphorus-doping, as we infer by comparison with silicon-vacancy centers in optical-grade single-crystal diamond.
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关键词
photoluminescence,diamond,nitrogen-vacancy,silicon-vacancy,phosphorus-doped
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