首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Femtowatt incoherent image conversion from mid-infrared light to near-infrared light
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Femtowatt incoherent image conversion from mid-infrared light to near-infrared light

机译:Femtowatt的图像转换从中红外光到近红外光

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摘要

We report on the experimental conversion imaging of an incoherent continuous-wave dim source from mid-infrared light to near-infrared light with a lowest input power of 31 femtowatt (fW). Incoherent mid-infrared images of light emission from a heat lamp bulb with an adjustable power supply at window wavelengths ranging from 2.9 mu m to 3.5 mu m are used for upconversion. The sum-frequency generation is realized in a laser cavity with the resonant wavelength of 1064 nm pumped by an LD at 806 nm built around a periodically poled lithium niobate (PPLN) crystal. The converted infrared image in the wavelength range similar to 785 nm with a resolution of about 120 x 70 is low-noise detected using a silicon-based camera. By optimizing the system parameters, the upconversion quantum efficiency is predicted to be 28% for correctly polarized, on-axis and phase-matching light.
机译:我们报告了从中红外光到31 Femtowatt(FW)的最低输入功率的近红外光的反射连续波暗光源的实验转换成像。 从2.9μm至3.5 mu m的窗波长的带有可调节电源的热灯灯泡的光发射的光发射的中红外线图像被用于上变化。 在激光腔中实现的和频率在激光腔中实现,其谐振波长为1064nm,其由806nm泵送的LD缠绕在周期性抛光的铌酸锂(PPLN)晶体周围。 波长范围内的转换的红外图像类似于785nm,分辨率为约120 x 70是使用基于硅的相机检测的低噪声。 通过优化系统参数,预测正确极化的轴和相位匹配光的上增强量子效率预测为28%。

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