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Twist-induced guidance in coreless photonic crystal fiber: A helical channel for light

机译:无芯光子晶体光纤中的扭曲诱导导向:光的螺旋形通道

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A century ago, Einstein proposed that gravitational forces were the result of the curvature of space-time and predicted that light rays would deflect when passing a massive celestial object. We report that twisting the periodically structured “space” within a coreless photonic crystal fiber creates a helical channel where guided modes can form despite the absence of any discernible core structure. Using a Hamiltonian optics analysis, we show that the light rays follow closed spiral or oscillatory paths within the helical channel, in close analogy with the geodesics of motion in a two-dimensional gravitational field. The mode diameter shrinks, and its refractive index rises, as the twist rate increases. The birefringence, orbital angular momentum, and dispersion of these unusual modes are explored.
机译:一个世纪前,爱因斯坦提出引力是时空弯曲的结果,并预测光线在通过巨大天体时会发生偏转。我们报告说,扭曲无芯光子晶体光纤中的周期性结构“空间”会形成一个螺旋形通道,尽管没有任何可辨认的纤芯结构,但仍可在其中形成导模。使用哈密顿光学分析,我们发现光线沿着螺旋形通道内的闭合螺旋或振荡路径运动,与二维重力场中的运动测地学非常相似。随着扭曲率的增加,模直径减小,折射率增加。探索了这些异常模式的双折射,轨道角动量和色散。

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