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High-index-contrast multilayer hollow waveguides for mid-IR laser delivery

机译:高折射率对比的多层空心波导,用于中红外激光传输

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Hollow glass waveguides (HGWs) have been researched extensively for the efficient transmission of radiation over a broad spectral range spanning from the visible region to the far-IR. One such HGW film structure consists of a metallic substrate with overlaying multilayer dielectric thin film stack of alternating high and low refractive index films. The optical properties of such multilayer thin film stacks are well established and provide a method for developing photonic bandgap fibers with exceptionally low attenuation losses at a desired wavelength. Transmission losses can be minimized in multilayer waveguides through two main approaches; either maximizing the number of alternating layer pairs or maximizing the index contrast between adjacent films. In practice, it has been shown that for liquid-phase deposition-based procedures, the former approach leads to compounding surface and interface roughness, negating the low-loss advantage of a multilayer waveguide. Thus, this research focuses on maximizing index contrast between adjacent dielectrics in an attempt to minimize the number of films required to achieve acceptable transmission characteristics both in theory and in practice. In this study, multilayer waveguides are fabricated using three dielectric materials: silver iodide, lead sulfide, and cyclic olefin copolymer. Through exploitation of their high index contrast, these materials are used to develop low-film-count multilayer waveguides designed for enhanced transmission at both Er:YAG and CO_2 laser wavelengths.
机译:对空心玻璃波导(HGW)进行了广泛的研究,以有效地传输从可见光区域到远红外的宽光谱范围内的辐射。一种这样的HGW膜结构由金属基底组成,该金属基底具有由交替的高折射率膜和低折射率膜覆盖的多层介电薄膜叠层。这样的多层薄膜堆叠的光学性质已经很好地确立,并且提供了一种用于开发在期望的波长下具有极低的衰减损耗的光子带隙光纤的方法。通过两种主要方法可以使多层波导中的传输损耗最小化。最大化交替层对的数量或最大化相邻胶片之间的折射率对比。在实践中,已经表明,对于基于液相沉积的过程,前一种方法导致复合表面和界面粗糙度,从而抵消了多层波导的低损耗优势。因此,本研究着重于最大程度地提高相邻电介质之间的折射率对比,以试图在理论上和实践上最小化实现可接受的透射特性所需的薄膜数量。在这项研究中,多层波导是使用三种介电材料制造的:碘化银,硫化铅和环状烯烃共聚物。通过利用它们的高折射率对比度,这些材料被用于开发低膜数多层波导,这些波导设计用于增强Er:YAG和CO_2激光波长下的传输。

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