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Negative-index gratings formed by femtosecond laser overexposure and thermal regeneration

机译:飞秒激光过度曝光和热再生形成的负折射率光栅

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摘要

We demonstrate a method for the preparation of negative-index fibre Bragg gratings (FBGs) using 800 nm femtosecond laser overexposure and thermal regeneration. A positive-index type I-IR FBG was first inscribed in H2-free single-mode fibre using a femtosecond laser directed through a phase mask, and then a highly polarization dependant phase-shifted FBG (P-PSFBG) was fabricated from the type I-IR FBG by overexposure to the femtosecond laser. Subsequently, the P-PSFBG was thermally annealed at 800 °C for 12 hours. Grating regeneration was observed during thermal annealing, and a negative-index FBG was finally obtained with a high reflectivity of 99.22%, an ultra-low insertion loss of 0.08 dB, a blueshift of 0.83 nm in the Bragg wavelength, and an operating temperature of up to 1000 °C for more than 10 hours. Further annealing tests showed that the thermal stability of the negative-index FBG was lower than that of a type II-IR FBG, but much higher than that of a type I-IR FBG. Moreover, the formation of such a negative-index grating may result from thermally regenerated type IIA photosensitivity.
机译:我们演示了使用800 nm飞秒激光过度曝光和热再生来制备负折射率光纤布拉格光栅(FBG)的方法。首先使用经过相位掩膜的飞秒激光将正折射率型I-IR FBG刻在无H2单模光纤中,然后使用该类型制造高度偏振相关的相移FBG(P-PSFBG) I-IR FBG通过飞秒激光的过度曝光。随后,将P-PSFBG在800°C下热退火12小时。在热退火过程中观察到光栅再生,最终获得了负折射率FBG,其反射率高达99.22%,插入损耗极低,为0.08 dB,布拉格波长的蓝移为0.83 nm,操作温度为高达1000°C的时间超过10小时。进一步的退火测试表明,负折射率FBG的热稳定性低于II-IR FBG型,但远高于I-IR FBG型。而且,这种负折射率光栅的形成可以由热再生的IIA型光敏性引起。

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