首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Multidimensional spectroscopy and imaging of defects in synthetic diamond: excitation-emission-lifetime luminescence measurements with multiexponential fitting and phasor analysis
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Multidimensional spectroscopy and imaging of defects in synthetic diamond: excitation-emission-lifetime luminescence measurements with multiexponential fitting and phasor analysis

机译:多维光谱与合成金刚石缺陷的成像:具有多态拟合配合和分析分析的激发 - 发射寿命发光测量

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摘要

We report the application of phasor analysis and nonlinear iterative fitting to complex spatial and spectroscopic luminescence decay data obtained from multidimensional microscopy of a CVD diamond grown on a HPHT substrate. This spectral and lifetime-resolved analysis enabled spatial mapping of variations in concentrations of nitrogen vacancy (NV) defects in both charge states and the quenching of NV- defects, as well as the identification of SiV- luminescence. These imaging and spectroscopic modalities may be important for reliable fabrication of quantum devices based on such defects in diamond, which will require well-defined and characterised quantum electronic properties.
机译:我们报告了相量分析和非线性迭代拟合在复杂的空间和光谱发光衰减数据中的应用,这些数据来自于在HPHT衬底上生长的CVD金刚石的多维显微镜。这种光谱和寿命分辨分析能够在空间映射电荷态氮空位(NV)缺陷浓度的变化和NV缺陷的猝灭,以及识别SiV发光。这些成像和光谱模式对于基于金刚石中此类缺陷的量子器件的可靠制造可能很重要,这将需要明确定义和表征量子电子特性。

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