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Shaped Fiber Tips for Medical and Industrial Applications

机译:用于医疗和工业应用的异形纤维吸头

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摘要

Shaped fiber tips are machined or sculpted fiber ends which are formed using the glass from the fiber with no additional glass material. The tips are fabricated through either mechanical or laser machining processes. The tips are very useful in medical and industrial applications which require high power laser delivery (material or tissue cutting), even light distribution over a broad area (tissue ablation or photodynamic therapy), modified beam divergence or spot size (materials processing and communications links), or optical power redirection from the axis of the fiber in areas with small space restrictions (tissue ablation or perforations inside the human body). Descriptions of various shaped tips are provided, with concentration on tapered tips. The tapered tip is the most commonly used. The primary objective of this study was to measure the optical loss of such tapers vs. taper length, input (launch) numerical aperture (NA), and fiber diameter. The tapers fabricated and analyzed were 2:1 tapers using 0.22 NA fibers with 200, 400, and 500 um cores. The optical loss at 633nm for fibers with a 0.22 NA was measured to be 5.9dB (25% transmission) for a fully filled input NA and 0.8 dB (83% transmission) for a 0.12 input NA. The taper loss was found to depend strongly on input NA, but be relatively independent of taper length and fiber diameter. An optical modeling ray trace program was used to analyze the taper performance and validate the actual measurements. The modeling analysis will be a useful tool in design of tapers as well as other shaped fiber tips.
机译:异型纤维头是经过加工或雕刻的纤维端头,这些端头是使用由玻璃制成的玻璃制成的,没有其他玻璃材料。尖端通过机械或激光加工工艺制造。这些尖端在需要高功率激光传输(材料或组织切割),均匀光分布在大范围内(组织消融或光动力疗法),修正的光束发散度或光斑大小(材料处理和通讯链接)的医疗和工业应用中非常有用),或在空间限制较小的区域(人体内部的组织消融或穿孔)从光纤轴重定向光功率。提供了各种形状的尖端的说明,集中在锥形尖端上。锥形尖端是最常用的。这项研究的主要目的是测量这种锥度与锥度长度,输入(发射)数值孔径(NA)和纤维直径的光学损耗。使用具有200、400和500 um纤芯的0.22 NA纤维,制造和分析的锥度为2:1锥度。对于完全填充的输入NA,对于具有0.22 NA的光纤,在633nm处的光损耗测得为5.9dB(25%的透射率),对于输入值为0.12的NA,其光损耗为0.8dB(83%的透射率)。发现锥度损失很大程度上取决于输入NA,但是相对独立于锥度长度和纤维直径。使用光学建模射线跟踪程序来分析锥度性能并验证实际测量结果。建模分析将是锥度以及其他异形纤维尖端设计中的有用工具。

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