首页> 外文会议>Nonlinear Frequency Generation and Conversion: Materials and Devices XVII >Observation of a rainbow of visible colors in a near infrared cascaded Raman fiber laser and its novel application as a diagnostic tool for length resolved spectral analysis
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Observation of a rainbow of visible colors in a near infrared cascaded Raman fiber laser and its novel application as a diagnostic tool for length resolved spectral analysis

机译:近红外级联拉曼光纤激光器中可见光彩虹的观察及其作为长度解析光谱分析诊断工具的新应用

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In this work, we report and analyse the surprising observation of a rainbow of visible colors, spanning 390nm to 620nm, in silica-based, Near Infrared, continuous-wave, cascaded Raman fiber lasers. The cascaded Raman laser is pumped at 1117nm at around 200W and at full power we obtain -100 W at 1480nm. With increasing pump power at 1117nm, the fiber constituting the Raman laser glows in various hues along its length. From spectroscopic analysis of the emitted visible light, it was identified to be harmonic and sum-frequency components of various locally propagating wavelength components. In addition to third harmonic components, surprisingly, even 2nd harmonic components were observed. Despite being a continuous-wave laser, we expect the phase-matching occurring between the core-propagating NIR light with the cladding-propagating visible wavelengths and the intensity fluctuations characteristic of Raman lasers to have played a major role in generation of visible light. In addition, this surprising generation of visible light provides us a powerful non-contact method to deduce the spectrum of light propagating in the fiber. Using static images of the fiber captured by a standard visible camera such as a DSLR, we demonstrate novel, image-processing based techniques to deduce the wavelength component propagating in the fiber at any given spatial location. This provides a powerful diagnostic tool for both length and power resolved spectral analysis in Raman fiber lasers. This helps accurate prediction of the optimal length of fiber required for complete and efficient conversion to a given Stokes wavelength.
机译:在这项工作中,我们报告并分析了在基于二氧化硅的近红外连续波级联拉曼光纤激光器中可见光彩虹的惊人观察结果,范围为390nm至620nm。级联拉曼激光器在1117nm处以200W左右的功率泵浦,在全功率下,我们在1480nm处获得-100W。随着泵浦功率在1117nm处的增加,构成拉曼激光器的光纤沿其长度以各种色调发光。通过对发射的可见光的光谱分析,可以确定它是各种局部传播的波长分量的谐波分量和和频率分量。令人惊讶地,除了三次谐波分量,甚至观察到二次谐波分量。尽管是连续波激光器,我们预计在芯传播的NIR光与包层传播的可见波长之间发生的相位匹配与拉曼激光器的强度起伏特性在可见光的产生中起主要作用。此外,这种令人惊讶的可见光生成为我们提供了一种强大的非接触式方法,可以推断出在光纤中传播的光谱。使用标准的可见光相机(例如DSLR)捕获的光纤的静态图像,我们演示了基于图像处理的新颖技术,可以推断出在任何给定空间位置在光纤中传播的波长分量。这为拉曼光纤激光器的长度和功率分辨光谱分析提供了强大的诊断工具。这有助于准确预测完全有效地转换为给定斯托克斯波长所需的最佳光纤长度。

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