论文标题

N折旋转对称环的螺旋旋转模式的FRENET-SERRET分析螺旋光学波导

Frenet-Serret analysis of helical Bloch modes in N-fold rotationally symmetric rings of coupled spiralling optical waveguides

论文作者

Chen, Yang, Russell, Philip St. J.

论文摘要

电磁波在手性扭曲的结构中的行为是一个令人感兴趣的话题,至少可以追溯到1940年代在1940年代的微波行驶波管放大器中的发明,并在当代的手性超材料,超质面板和光子晶体纤维(PCFS)中最终研究。由旋转预成型绘制的手性微结构的光纤具有许多有用的特性,例如圆形双发性二色性和圆形二色性。最近已经显示,具有N倍旋转对称(对称组CN)横向微观结构的手性纤维支持螺旋BLOCH模式(HBMS)的家族,每种模式(HBMS)由Azimuthal Bloch Harmonics(或光学涡流)组成。一个例子是一个纤维,其围绕其中央轴(N核心单个环纤维)排列在环中的纤维。尽管这种类型的纤维可以很容易地使用标量耦合模式理论对其进行建模,但是对其光学特性的完整描述需要矢量分析,该分析考虑了光的极化状态,在循环和涡流双折射的研究中尤为重要。在本文中,我们使用嵌入在恒定半径的圆柱体表面中的正交二维螺旋坐标系,这是使用局部Frenet Serret框架对磁场进行严格的矢量耦合模式描述,该模式使用局部的FRENET Serret框架与每个N核心旋转和扭曲。分析将基于Bloch波的性质的物理直觉采用了先前的HBM理论,将启发式方法置于先前的HBM理论上。我们认为,这项研究有时会成为一个相当困难的领域,并有助于进一步探索这些迷人的波导系统的现实应用。

The behavior of electromagnetic waves in chirally twisted structures is a topic of enduring interest, dating back at least to the invention in the 1940s of the microwave travelling wave tube amplifier and culminating in contemporary studies of chiral metamaterials, metasurfaces, and photonic crystal fibers (PCFs). Optical fibers with chiral microstructures, drawn from a spinning preform, have many useful properties, exhibiting for example circular birefringence and circular dichroism. It has recently been shown that chiral fibers with N fold rotationally symmetric (symmetry group CN) transverse microstructures support families of helical Bloch modes (HBMs), each of which consists of a superposition of azimuthal Bloch harmonics (or optical vortices). An example is a fiber with N coupled cores arranged in a ring around its central axis (N core single ring fiber). Although this type of fiber can be readily modelled using scalar coupled mode theory, a full description of its optical properties requires a vectorial analysis that takes account of the polarization state of the light particularly important in studies of circular and vortical birefringence. In this paper we develop, using an orthogonal two dimensional helicoidal coordinate system embedded in a cylindrical surface at constant radius, a rigorous vector coupled mode description of the fields using local Frenet Serret frames that rotate and twist with each of the N cores. The analysis places on a firm theoretical footing a previous HBM theory in which a heuristic approach was taken, based on physical intuition of the properties of Bloch waves. We believe this study provides clarity in what can sometimes be a rather difficult field, and will facilitate further exploration of real-world applications of these fascinating waveguiding systems.

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