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Hollow-core photonic crystal fiber based optical frequency references

机译:基于空心光子光子晶体纤维的光学频率参考

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This research deals with preparation of an optical frequency references based on hollow-core photonic crystal fibers (HC-PCF). This fiber-based type of absorption cells represents a effiecient way how to replace classic bulky and fragile glass made tubes references with low-weight and low-volume optical fibers. This approach allows not only to increase possible interaction length between incident light and absorption media but it also carries a possibility of manufacturing of easy-operable reference which is set up just by plugging-in of optical connectors into the optical setup. We present the results of preparation, manufacturing and filling of a set of fiber-based cells intended for lasers frequency stabilization. The work deals with setting and optimalization of HC-PCF splicing processes, minimalization of optical losses between HC-PCF and single-mode fiber (SMF) transitions and finishing of HC-PCF spliced ends with special care for optimal closing of hollow-core structure needed for avoiding of absorption media leakage.
机译:该研究涉及基于中空核心光子晶体纤维(HC-PCF)的光学频率参考。这种基于纤维类型的吸收电池代表了一种有效的方式,如何用低重量和低容量光纤代替经典的笨重和脆弱的玻璃制成的管。该方法不仅可以提高入射光和吸收介质之间的可能的相互作用长度,而且还携带易于操作的参考的可能性,该参考即可通过插入光学连接器进入光学设置。我们介绍了用于激光频率稳定的一组纤维基细胞的制备,制造和填充结果。该工作涉及HC-PCF拼接工艺的设置和最优化,HC-PCF和单模光纤(SMF)之间的光学损耗的最小化,HC-PCF拼接的过渡和精加工结束,具有特别注意的空心核心结构的最佳关闭需要避免吸收介质泄漏。

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