Marciniak Christian D, Ball Harrison B, Hung Alex T-H, Biercuk Michael J
Opt Express. 2017 Jul 10;25(14):15643-15661. doi: 10.1364/OE.25.015643.
We present and analyze two pathways to produce commercial optical-fiber patch cords with stable long-term transmission in the ultraviolet (UV) at powers up to ~ 200 mW, and typical bulk transmission between 66-75 %. Commercial fiber patch cords in the UV are of great interest across a wide variety of scientific applications ranging from biology to metrology, and the lack of availability has yet to be suitably addressed. We provide a guide to producing such solarization-resistant, hydrogen-passivated, polarization-maintaining, connectorized and jacketed optical fibers compatible with demanding scientific and industrial applications. Our presentation describes the fabrication and hydrogen loading procedure in detail and presents a high-pressure vessel design, calculations of required H loading times, and information on patch cord handling and the mitigation of bending sensitivities. Transmission at 313 nm is measured over many months for cumulative energy on the fiber output of > 10 kJ with no demonstrable degradation due to UV solarization, in contrast to standard uncured fibers. Polarization sensitivity and stability are characterized yielding polarization extinction ratios between 15 dB and 25 dB at 313 nm, where we find patch cords become linearly polarizing. We observe that particle deposition at the fiber facet induced by high-intensity UV exposure can (reversibly) deteriorate patch cord performance and describe a technique for nitrogen purging of fiber collimators which mitigates this phenomenon.
我们展示并分析了两种生产商用光纤跳线的途径,这些跳线在高达约200 mW的紫外光(UV)下具有稳定的长期传输性能,典型的整体传输率在66%至75%之间。紫外光领域的商用光纤跳线在从生物学到计量学等广泛的科学应用中具有极大的吸引力,但其供应不足的问题尚未得到妥善解决。我们提供了一份指南,介绍如何生产出适用于严苛科学和工业应用的抗光老化、氢钝化、保偏、带连接器且有护套的光纤。我们的报告详细描述了制造和氢加载过程,展示了一种高压容器设计、所需氢加载时间的计算,以及关于跳线处理和弯曲敏感度缓解的信息。与标准未固化光纤相比,在数月内对光纤输出累积能量大于10 kJ的情况下,测量了313 nm处的传输,未发现因紫外光老化导致的明显退化。表征了偏振敏感度和稳定性,在313 nm处产生的偏振消光比在15 dB至25 dB之间,在此我们发现跳线变为线性偏振。我们观察到高强度紫外光照射在光纤端面上引起的颗粒沉积会(可逆地)降低跳线性能,并描述了一种用于对光纤准直器进行氮气吹扫的技术,该技术可减轻这种现象。