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Metallic hollow waveguide based on GeO_2-NaOH precursor solution for transmission of CO_2 laser radiations

机译:基于GeO_2-NaOH前体溶液的金属空心波导,用于传输CO_2激光辐射

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By using the GeO2-NaOH precursor solution, the hexagonal structural GeO2 reflective films with high flatness were grown on the inner wall of stainless steel (SUS) capillary tubes by liquid phase deposition method. XRD and SEM were measured to investigate the structure and surface roughness of GeO2 films prepared with different precursor solution. Subsequently, the transmission losses were measured and calculated which revealed the transmission loss was only one third of previous value in the sample using the glass tube. Considering the processing technology limit of 1mm-bore hollow waveguide, the output energy distribution of the 1.5mm-bore sample approximates to Gaussian distribution which may excite the less high-order modes. Furthermore, the full divergence angles, bending loss and output power were further investigated. These results demonstrate that the transmission performance of the GeO2 SUS tube-based hollow waveguide can meet the requirements for laser surgery and material processing.
机译:通过使用GeO2-NaOH前体溶液,通过液相沉积法在不锈钢(SUS)毛细管的内壁上生长出具有高平坦度的六方结构GeO2反射膜。用XRD和SEM测量了用不同前驱体溶液制备的GeO2薄膜的结构和表面粗糙度。随后,测量并计算了传输损耗,发现传输损耗仅为使用玻璃管的样品中先前值的三分之一。考虑到1mm孔径空心波导的加工技术限制,1.5mm孔径样品的输出能量分布近似于高斯分布,这可能激发不太高阶的模。此外,进一步研究了全发散角,弯曲损耗和输出功率。这些结果表明,GeO2 SUS管基空心波导的传输性能可以满足激光手术和材料加工的要求。

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