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螺旋扭曲光子晶体光纤中轨道角动量共振的激发。

Excitation of orbital angular momentum resonances in helically twisted photonic crystal fiber.

机构信息

Max Planck Institute for the Science of Light, Guenther-Scharowsky Strasse 1, 91058 Erlangen, Germany.

出版信息

Science. 2012 Jul 27;337(6093):446-9. doi: 10.1126/science.1223824.

Abstract

Spiral twisting offers additional opportunities for controlling the loss, dispersion, and polarization state of light in optical fibers with noncircular guiding cores. Here, we report an effect that appears in continuously twisted photonic crystal fiber. Guided by the helical lattice of hollow channels, cladding light is forced to follow a spiral path. This diverts a fraction of the axial momentum flow into the azimuthal direction, leading to the formation of discrete orbital angular momentum states at wavelengths that scale linearly with the twist rate. Core-guided light phase-matches topologically to these leaky states, causing a series of dips in the transmitted spectrum. Twisted photonic crystal fiber has potential applications in, for example, band-rejection filters and dispersion control.

摘要

螺旋扭曲为控制具有非圆形导芯的光纤中光的损耗、色散和偏振状态提供了额外的机会。在这里,我们报告了在连续扭曲的光子晶体光纤中出现的一种效应。在空心通道的螺旋晶格的引导下,包层光被迫沿螺旋路径传播。这将一部分轴向动量流转移到角向方向,导致在与扭曲速率成线性比例的波长处形成离散的轨道角动量状态。芯层引导的光与这些泄漏状态拓扑相位匹配,导致透射光谱中出现一系列的下降。扭曲的光子晶体光纤在带阻滤波器和色散控制等方面具有潜在的应用。

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