arXiv · 1806.01965
Further investigations of the deep double donor magnesium in silicon
Abstract
The deep double donor levels of substitutional chalcogen impurities in silicon have unique optical properties which may enable a spin/photonic quantum technology. The interstitial magnesium impurity (Mg$_i$) in silicon is also a deep double donor but has not yet been studied in the same detail as have the chalcogens. In this study we look at the neutral and singly ionized Mg$_i$ absorption spectra in natural silicon and isotopically enriched 28-silicon in more detail. The 1s(A$_1$) to 1s(T$_2$) transitions, which are very strong for the chalcogens and are central to the proposed spin/photonic quantum technology, could not be detected. We observe the presence of another double donor (Mg$_{i*}$) that may result from Mg$_i$ in a reduced symmetry configuration, most likely due to complexing with another impurity. The neutral species of Mg$_{i*}$ reveal unusual low lying ground state levels detected through temperature dependence studies. We also observe a shallow donor which we identify as a magnesium-boron pair.
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Rohan Abraham, Adam DeAbreu, Kevin Morse, Valentina Shuman, Leonid Portsel, Anatoly Lodygin, Yuri Astrov, Nikolay Abrosimov, Sergey Pavlov, Heinz-Wilhelm Hübers, Stephanie Simmons, Michael Thewalt. 2018-06-05. Further investigations of the deep double donor magnesium in silicon. https://doi.org/10.1103/physrevb.98.045202
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