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Fabrication of Shatter-Proof Metal Hollow-Core Optical Fibers for Endoscopic Mid-Infrared Laser Applications

机译:用于内窥镜中红外激光应用的防碎金属空心光纤的制造

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A method for fabricating robust and thin hollow-core optical fibers that carry mid-infrared light is proposed for use in endoscopic laser applications. The fiber is made of stainless steel tubing, eliminating the risk of scattering small glass fragments inside the body if the fiber breaks. To reduce the inner surface roughness of the tubing, a polymer base layer is formed prior to depositing silver and optical-polymer layers that confine light inside the hollow core. The surface roughness is greatly decreased by re-coating thin polymer base layers. Because of this smooth base layer surface, a uniform optical-polymer film can be formed around the core. As a result, clear interference peaks are observed in both the visible and mid-infrared regions. Transmission losses were also low for the carbon dioxide laser used for medical treatments as well as the visible laser diode used for an aiming beam. Measurements of bending losses for these lasers demonstrate the feasibility of the designed fiber for endoscopic applications.
机译:提出了一种用于制造携带中红外光的坚固且细的空心光纤的方法,该方法用于内窥镜激光应用。光纤由不锈钢管制成,消除了光纤破裂时将小玻璃碎片散布到体内的风险。为了减小管的内表面粗糙度,在沉积将光限制在空心内部的银和光学聚合物层之前,先形成聚合物基层。通过重新涂覆薄的聚合物基层可以大大降低表面粗糙度。由于该光滑的基层表面,可以在芯周围形成均匀的光学聚合物膜。结果,在可见光和中红外区域均观察到清晰的干扰峰。用于医疗的二氧化碳激光器以及用于瞄准光束的可见激光二极管的传输损耗也很低。这些激光器的弯曲损耗的测量证明了所设计的光纤用于内窥镜应用的可行性。

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