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首页> 外文期刊>Journal of Lightwave Technology >Tunable planar polymer Bragg gratings having exceptionally low polarization sensitivity
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Tunable planar polymer Bragg gratings having exceptionally low polarization sensitivity

机译:具有极低偏振灵敏度的可调平面聚合物布拉格光栅

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We report fabrication of planar polymer Bragg gratings that can be thermally tuned 20 nm with very low polarization sensitivity, (/spl lambda//sub TE/-/spl lambda//sub TM/)>/spl plusmn/0.05 nm, throughout the tuning range. Polarization sensitivity in a planar film is caused by an anisotropic effective refractive index in the film typically resulting from strain. Strain in polymer Bragg gratings is caused by the photopolymerization and the thermal annealing processes utilized for the grating fabrication. For the case of polymer Bragg gratings, we show for the first time that fabrication-induced strain can be nearly eliminated by laser etching parallel trenches into the polymer layers on each side of the grating. The improvement in polarization sensitivity depends strongly on the trench separation, the thermal annealing process, and the grating tuning method.
机译:我们报告了平面聚合物布拉格光栅的制造,该光栅可以在非常低的偏振灵敏度下进行热调谐20 nm,(/ spl lambda // sub TE /-/ spl lambda // sub TM /)> / spl plusmn / 0.05 nm,在整个过程中调整范围。平面薄膜中的偏振灵敏度是由薄膜中通常由应变引起的各向异性有效折射率引起的。聚合物布拉格光栅中的应变是由光聚合和用于光栅制造的热退火过程引起的。对于聚合物布拉格光栅,我们首次表明,通过将平行沟槽激光刻蚀到光栅每一侧的聚合物层中,几乎可以消除制造引起的应变。极化灵敏度的提高在很大程度上取决于沟槽分离,热退火工艺和光栅调谐方法。

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