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Design and fabrication of fiber Bragg gratings for vertical cavity surface emitting laser diodes

机译:垂直腔表面发射激光二极管的光纤布拉格光栅的设计与制造

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We simulated chirped and apodized fiber Bragg gratings (fiber gratings with modulation of the amplitude and with modulation of the spacing) the same as uniform fiber gratings. Results of our simulations are presented. Apodization of fiber Bragg gratings (FBG) has many advantages in comparison to other types of FBGs. Main improvement is suppressing of the side lobes in the grating spectral properties. The difference of side lobes suppression for uniform and Gaussian apodized grating is more than 110dB. On the basis of these results we designed a special fiber Bragg grating with apodization especially for using to stabilize semiconductor lasers for high precision laser applications with central wavelength 760nm. We present application of methods for calculation of parameters of apodized fiber Bragg gratings (FBG). We used combination of methods based on layered dielectric media (LDM) and the transfer matrix. On the contrary to the other calculation techniques the LDM method is based on sequence of thin films of dielectric media assembled in the direction of wave propagation. The combination of the LDM method and the transfer matrix method can be used to the calculation of arbitrary fiber gratings with high precision. For this designed apodized FBG we calculated the phase mask to manufacture by interference patterns. The phase mask and the fixation bottom of the fiber were made by e-beam lithography to achieve highly precise stability during manufacturing. We present the set-up of this system for writing FBG by pulsed UV laser with wavelength 266nm. Measurement of commercially available FBG with comparison to our calculated FBG is presented.
机译:我们模拟了chi和切趾的光纤布拉格光栅(具有幅度调制和间距调制的光纤光栅),它与均匀光纤光栅相同。给出了我们的模拟结果。与其他类型的FBG相比,光纤布拉格光栅(FBG)的切趾具有许多优势。主要的改进是抑制了光栅光谱特性中的旁瓣。均匀和高斯变迹光栅的旁瓣抑制差异大于110dB。基于这些结果,我们设计了一种特殊的具有切趾功能的光纤布拉格光栅,特别用于稳定半导体激光器,以稳定中心波长为760nm的高精度激光应用。我们介绍方法的应用的变迹的光纤布拉格光栅(FBG)的参数计算。我们使用了基于分层介电介质(LDM)和传输矩阵的方法组合。与其他计算技术相反,LDM方法基于在波传播方向上组装的电介质薄膜的顺序。 LDM方法和传递矩阵方法的组合可用于高精度计算任意光纤光栅。对于此设计的变迹FBG,我们计算了要通过干涉图样制造的相位掩模。光纤的相位掩模和固定底部是通过电子束光刻技术制成的,以在制造过程中实现高度精确的稳定性。我们介绍了用于通过波长为266nm的脉冲UV激光写入FBG的该系统的设置。介绍了与我们计算出的FBG相比的市售FBG的测量。

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