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Room temperature optical thermometry based on the luminescence of the SiV defects in diamond

机译:基于钻石中SIV缺陷的发光的室温光学温度

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摘要

Diamond microcrystals containing silicon-vacancy (SiV) defects were synthesized by using a high-pressure high-temperature treatment of a mixture of pertinent organic-inorganic precursors. Photoluminescence of the SiV defects and its temperature dependence (80--400 K) were studied. A strong sharp zero-phonon line (ZPL) at 738 nm was recorded at all temperatures under 488 nm laser excitation. In particular, the thermally induced shift of the ZPL was found promising for optical temperature sensing in the near infrared spectral range at biomedically relevant temperatures.
机译:通过使用相关的有机无机前体的混合物的高压高温处理,通过高压高温处理合成含有硅空位(SIV)缺陷的金刚石微晶。 研究了SIV缺陷的光致发光及其温度依赖(80--400 k)。 在488nm激光激发下的所有温度下,记录了738nm的强大锐零ZPRON线(ZPL)。 特别地,发现ZPL的热诱导的偏移对于在生物学相关温度下的近红外光谱范围内的光学温度感测是有希望的。

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    Institute of Physics University of Tartu EE50411 Tartu Estonia;

    Institute of Physics University of Tartu EE50411 Tartu Estonia;

    Institute of Physics University of Tartu EE50411 Tartu Estonia;

    Institute for High Pressure Physics RAS 142190 Troitsk Moscow Russia;

    Prokhorov General Physics Institute RAS 119991 Moscow Russia;

    Institute of Physics University of Tartu EE50411 Tartu Estonia;

    Institute of Physics University of Tartu EE50411 Tartu Estonia;

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  • 正文语种 rus
  • 中图分类 光学;
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