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在手性气体填充光子晶体光纤中对导波涡旋进行稳健的激发和拉曼转换。

Robust excitation and Raman conversion of guided vortices in a chiral gas-filled photonic crystal fiber.

作者信息

Davtyan S, Chen Y, Frosz M H, St J Russell P, Novoa D

出版信息

Opt Lett. 2020 Apr 1;45(7):1766-1769. doi: 10.1364/OL.383760.

DOI:10.1364/OL.383760
PMID:32235994
Abstract

The unique ring-shaped intensity patterns and helical phase fronts of optical vortices make them useful in many applications. Here we report for the first time, to the best of our knowledge, efficient Raman frequency conversion between vortex modes in a twisted hydrogen-filled single-ring hollow core photonic crystal fiber (SR-PCF). High-fidelity transmission of optical vortices in an untwisted SR-PCF becomes more and more difficult as the orbital angular momentum (OAM) order increases, due to scattering at structural imperfections in the fiber microstructure. In a helically twisted SR-PCF, however, the degeneracy between left- and right-handed versions of the same mode is lifted, with the result that they are topologically protected from such scattering. With launch efficiencies of ${\sim}{75}% $∼75%, a high damage threshold and broadband guidance, these fibers are ideal for performing nonlinear experiments that require the polarization state and azimuthal order of the interacting modes to be preserved over long distances. Vortex coherence waves of internal molecular motion carrying angular momentum are excited in the gas, permitting the polarization and OAM of the Raman bands to be tailored, even in spectral regions where conventional solid-core waveguides are opaque or susceptible to optical damage.

摘要

光学涡旋独特的环形强度图案和螺旋相位前沿使其在许多应用中都很有用。据我们所知,在此我们首次报道了在扭曲的充氢单环空心光子晶体光纤(SR-PCF)中涡旋模式之间高效的拉曼频率转换。随着轨道角动量(OAM)阶数的增加,由于光纤微结构中结构缺陷处的散射,在未扭曲的SR-PCF中光学涡旋的高保真传输变得越来越困难。然而,在螺旋扭曲的SR-PCF中,同一模式的左旋和右旋版本之间的简并性被消除,结果是它们在拓扑上受到保护,免受此类散射的影响。这些光纤具有约75%的发射效率、高损伤阈值和宽带导光特性,非常适合进行非线性实验,这类实验要求相互作用模式的偏振态和方位角阶数在长距离上得以保持。气体中携带角动量的内部分子运动的涡旋相干波被激发,这使得即使在传统实心波导不透明或易受光学损伤的光谱区域,拉曼带的偏振和OAM也能够被调整。

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