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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Conversion of constant-wave near-infrared laser to continuum white light by Yb-doped oxides
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Conversion of constant-wave near-infrared laser to continuum white light by Yb-doped oxides

机译:YB掺杂氧化物将恒波近红外激光转换为连续白光

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摘要

White light generation is of particular interest for artificial lighting as well as spectroscopy. Here, we report the conversion of constant-wave (CW) near infrared (NIR) laser to continuum white light emission by Yb-doped oxides. The white light generation occurs by irradiating the oxide powders with the NIR laser at room temperature and atmospheric pressure. The excitation powder dependence of the emission intensity demonstrates an evident threshold, above which the brightness increases abruptly. By using an infrared thermal camera, it is found that the above-threshold rise of emission intensity is accompanied by the rapid rise of sample temperature, and the lowest temperature of white light emission is about 630 degrees C, which is far lower than the spectrally derived blackbody radiation temperature (2000 degrees C). In addition, the results show that the peak of the emission is close to the excitation laser wavelength (940 nm), and the spectral width grows with excitation power and sample temperature. These observations lead us to conclude that the white light is associated with the thermally enhanced spectral continuum generated by nonlinear optical processes, such as resonant Raman scattering.
机译:白光发电对于人造照明以及光谱学特别令人兴趣。在这里,我们将恒定波(CW)靠近红外线(NIR)激光的转换转换为YB掺杂氧化物的连续白光发射。通过在室温和大气压下用NIR激光照射氧化物粉末,发生白光发生。发射强度的激发粉末依赖性演示了明显的阈值,上述亮度突然增加。通过使用红外线热相机,发现发射强度的上述阈值升高伴随着样品温度的快速上升,并且白色发光的最低温度约为630℃,远低于光谱衍生的黑体辐射温度(& 2000℃)。另外,结果表明,发射的峰值接近激光激光波长(940nm),并且光谱宽度随着激励力和样品温度而生长。这些观察结果导致我们得出结论,白光与由非线性光学过程产生的热增强的光谱连续轴相关,例如谐振拉曼散射。

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