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Demonstration of polarization-independent broadband multilayer gratings

机译:偏振无关的宽带多层光栅的示范

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Multilayer dielectric gratings (MDGs) have been widely used in spectral beam combining, chirped pulse amplification, and external cavity diode lasers systems. However, the one-dimensional MDGs suffer from the polarization-sensitive properties due to the modulation in only one direction. Two-dimensional (2D) MDGs have more flexible control ability to realize polarization-independent properties but are rarely reported. Here, we demonstrate the realization of polarization-independent broadband MDGs via 2D grating array. The 2D Si:H MDG exhibits more than 97% non-polarized diffraction efficiency over 90 nm. Further, the influence of the refractive index on high-efficiency bandwidth of the MDGs was investigated via a comparative study using Si:H and TiO_2. materials with a large difference in refractive indexes. The high-efficiency bandwidth of Si:H MDGs is near 1.4 times the breadth of TiO_2 MDGs. Our results provide a new platform and deeper understanding to realize polarization-independent broadband MDGs.
机译:多层电介质光栅(MDGS)已广泛用于光谱束组合,啁啾脉冲放大和外腔二极管激光器系统。然而,一维MDG由于仅在一个方向上的调制而遭受偏振敏感性。二维(2D)MDGS具有更灵活的控制能力,实现无关的性能,但很少报道。这里,我们通过2D光栅阵列证明了极化无关的宽带MDGS的实现。 2D Si:H MDG在90nm上显示出超过97%的非极化衍射效率。此外,通过使用Si:H和TiO_2,通过比较研究研究了折射率对MDGS的高效率带宽的影响。具有很大差异折射率的材料。 SI:H MDG的高效率带宽接近TiO_2 MDG的宽度1.4倍。我们的结果提供了一个新的平台和更深入的理解,实现了独立于极化的宽带千年发展目标。

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