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Multilayer polymer dielectric films for hollow glass waveguides

机译:中空玻璃波导的多层聚合物介电膜

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Hollow glass waveguides (HGWs) have been extensively investigated for the transmission of broadband, high-power radiation, particularly in the mid-infrared. One area of particular interest is the deposition of dielectric thin films within the hollow core of the HGW in order to reduce the losses at desired wavelengths. By implementing a thin film multilayer structure with high index mismatch between adjacent films, it is possible to dramatically improve the losses of the waveguides due to the thin film interference effect. Existing multilayer film research has utilized heavy metal halides, which although provide considerable index contrast, are toxic and unsuitable for clinical applications in which they are often used. Polymer dielectric thin films provide desirable optical properties for HGWs but are hindered by solvent compatibility in the deposition procedure. This work demonstrates implementation of a polymer multilayer dielectric thin film stack within a HGW, using Chemours™ Teflon AF (n = 1.29) as the low-index material and polystyrene (n = 1.59) as the high-index material. These two polymers were deposited using liquid phase techniques within a HGW; the absorption spectra of waveguide as each layer was deposited on was analyzed in the mid-IR with an FTIR, and straight and bending losses were measured on a CO_2 laser. Appreciable losses were realized with the addition of the second polymer film and the interference bands red-shifted with the second layer, suggesting the successful creation of the multilayer structure.
机译:中空玻璃波导(HGW)已被广泛研究用于宽带,高功率辐射的传输,特别是在中红外方面。一个特别感兴趣的领域是在HGW的空心内沉积电介质薄膜,以减少所需波长的损耗。通过实现在相邻膜之间具有高折射率失配的薄膜多层结构,由于薄膜干涉效应,可以显着改善波导的损耗。现有的多层膜研究已经利用了重金属卤化物,尽管其提供了相当大的折射率对比,但是它们是有毒的并且不适用于经常使用它们的临床应用。聚合物介电薄膜为HGW提供了理想的光学性能,但在沉积过程中受到溶剂相容性的阻碍。这项工作演示了使用Chemours™铁氟龙AF(n = 1.29)作为低折射率材料和聚苯乙烯(n = 1.59)作为高折射率材料在HGW中实现聚合物多层电介质薄膜堆栈的方法。这两种聚合物是使用液相技术在HGW内沉积的。用FTIR在中红外分析了沉积每一层的波导的吸收光谱,并在CO_2激光器上测量了直线损失和弯曲损失。通过添加第二聚合物薄膜以及第二层使干涉带发生红移,实现了可观的损失,这表明成功创建了多层结构。

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