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Refractive index and geometrical structure measurement of a core-doped photonic crystal fiber

机译:掺芯光子晶体光纤的折射率和几何结构测量

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Using confocal scanning optical microscopy, we carried out a direct.refractive index profiling technique of complex and non-symmetric structured optical fibers. Several improvements on the earlier design are proposed; a light emitting diode (LED) at 658 nm wavelength instead of a laser diode (LD) or He-Ne laser is used as a light source for better index precision, and a simple longitudinal linear scanning and a curve fitting techniques are adapted instead of a servo control for maintaining an optical confocal arrangement. Also, we have developed a novel technique to remove measurement noise generated by pinhole diffraction. This improved, straightforward, and robust method can be used to determine the refractive index profile of optical fibers by determining the reflectivity of a sample's surface. This technique is easy and repeatable, and we demonstrated the refractive index measurement of a core-doped photonic crystal fiber for the first time.
机译:使用共聚焦扫描光学显微镜,我们进行了复杂和非对称结构光纤的直接折射率分布技术。提出了对早期设计的一些改进。可以使用658 nm波长的发光二极管(LED)代替激光二极管(LD)或He-Ne激光器来获得更好的折射率精度,并且采用简单的纵向线性扫描和曲线拟合技术来代替用于维持光学共焦装置的伺服控制。此外,我们还开发了一种新颖的技术来消除针孔衍射产生的测量噪声。通过确定样品表面的反射率,可以使用这种经过改进,简单且健壮的方法来确定光纤的折射率分布。该技术简单且可重复,我们首次展示了掺芯光子晶体光纤的折射率测量。

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