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Transmission Characteristics of Long-Period Fiber Gratings Using Periodically Corroded Single-Mode Fibers

机译:周期性腐蚀单模光纤长周期光纤光栅的传输特性

摘要

Transmission characteristics of long-period fiber gratings (LPFGs) fabricated by periodically etching a conventional single-mode fiber (SMF) are investigated. After coating the SMF with photoresist, the cladding of the SMF is symmetrically and periodically removed by using a wet etching technique resulting in the formation of the LPFG. Tensile strain reinforces the coupling strength between the core and the cladding mode based on the photoelastic effect. The extinction ratio of the SMF-based LPFG at a wavelength of 1550.8 nm is measured to be -15.1 dB when the applied strain is 600 mu epsilon. The ascent of ambient index shifts the resonant wavelength to shorter wavelength because of the increase of the effective refractive index of the cladding mode. The extinction ratio is diminished by increase in the ambient index because of the induction of the optical attenuation of the cladding mode. The transmission characteristics of the proposed LPFG with variations in torsion are also measured. The photoelastic effect based on torsion changes the extinction ratio and the resonant wavelength of the proposed SMF-based LPFG. The polarization-dependent loss of the LPFG is also increased by torsion because of the torsion-induced birefringence. The polarization-dependent loss of the LPFG at torsion of 8.5 rad/m is measured to be 3.9 dB.
机译:研究了通过周期性蚀刻常规单模光纤(SMF)制成的长周期光纤光栅(LPFG)的传输特性。在用光致抗蚀剂涂覆SMF之后,通过使用湿蚀刻技术对称且周期性地去除SMF的覆层,从而形成LPFG。拉伸应变基于光弹性效应增强了芯和包层模式之间的耦合强度。当施加的应变为600μepsilon时,测得的基于SMF的LPFG在1550.8 nm波长处的消光比为-15.1 dB。由于包层模式的有效折射率的增加,环境折射率的上升将谐振波长移至较短的波长。由于包层模式的光衰减的感应,环境指数的增加会降低消光比。还测量了所提出的LPFG的扭转特性的传输特性。基于扭转的光弹性效应改变了所提出的基于SMF的LPFG的消光比和共振波长。 LPFG的偏振相关损耗也会由于扭转而增加,因为扭转会引起双折射。 LPFG在8.5 rad / m扭转下的偏振相关损耗经测量为3.9 dB。

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