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Quantum cascade laser light propagation through hollow silica waveguides

机译:量子级联激光通过中空二氧化硅波导的传播

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摘要

In this paper, the transmission characteristics of hollow silica waveguides with bore diameters of 300 and 1000 μm are investigated using a 7.8-μm quantum cascade laser system. We show that the bore diameter, coiling and launch conditions have an impact on the number of supported modes in the waveguide. Experimental verification of theoretical predictions is achieved using a thermal imaging camera to monitor output intensity distributions from waveguides under a range of conditions. The thermal imaging camera allowed for more detailed images than could be obtained with a conventionally used beam profiler. The results show that quasi-single-mode transmission is achievable under certain conditions although guided single-mode transmission in coiled waveguides requires a smaller bore diameter-to-wavelength ratio than is currently available. Assessment of mode population is made by investigating the spatial frequency content of images recorded at the waveguide output using Fourier transform techniques.
机译:在本文中,使用7.8-μm量子级联激光系统研究了孔径为300和1000μm的中空二氧化硅波导的传输特性。我们表明,孔径,盘绕和发射条件对波导中支持模式的数量有影响。使用红外热像仪监视一系列条件下波导输出的强度分布,可以对理论预测进行实验验证。与使用常规光束轮廓仪所获得的图像相比,热像仪可以提供更详细的图像。结果表明,尽管在某些条件下仍可实现准单模传输,但是在螺旋波导中进行引导的单模传输所需的孔径与波长之比要小于当前的孔径。通过使用傅立叶变换技术调查在波导输出处记录的图像的空间频率含量,可以进行模式填充的评估。

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