论文标题

THZ脉冲沿高度移动的IRIS线波导向下传播的THZ脉冲的近距离前向片段分析

Paraxial forward-scatter field analysis for a THz pulse traveling down a highly overmoded iris-line waveguide

论文作者

Naji, Adham, Stupakov, Gennady

论文摘要

高度移动的虹膜线结构具有理想的特征,可在长距离内有效运输THZ辐射。先前的研究已经分析了虹膜线,使用诸如Vainstein的阻抗边界条件或扰动模式匹配之类的方法,大约是具有薄筛网的长开放谐振器结构。这些方法的目的是寻求代表在稳定状态下长的虹膜线结构中代表主要(最小损失)传播模式的特征分解。在本文中,提出了向前旅行的波分析,其中短Thz脉冲近似地通过细胞(包括瞬态状态)越过超大的结构细胞。虹膜线的周期性不连续性通过前波正交模式分解进行分析,然后将其用于为每个单元格构建一个“前向刻板”模型(矩阵)。提出的方法预测了一种衍射损失行为,该行为与先前的分析方法在稳态状态下发现的特征指南相吻合,以进行长波指导,但添加了分析有限长度的波导的能力,显示出瞬态的瞬态,随着它们的发展并在线变化并降至主导模式,并提供了数字实施速度,而数字实现了典型的模式。这种方法也很容易扩展,以分析具有机械缺陷(例如未对准或安培缺陷)的虹膜线,从而可以研究针对制造公差的性能敏感性。

Highly overmoded iris-line structures carry desirable features for the efficient transportation of THz radiation over long distances. Previous studies have analyzed the iris line, modeled approximately as a long open-resonator structure with thin screens, using methods such as Vainstein's impedance boundary condition or perturbative mode matching. The aim in those methods was to seek the eigensolution that represents the dominant (least lossy) propagation mode in a long iris-line structure at steady state. In this paper, a forward-traveling wave analysis is presented, wherein a short THz pulse paraxially traverses the oversized structure cell by cell, including the transient regime. The iris line's periodic discontinuities are analyzed in terms of forward-wave orthogonal mode decompositions, which are then used to build a 'forward-scatter' model (matrix) for each cell. The presented approach predicts a diffraction loss behavior that agrees with that of the eigensolution found by the previous analytical methods at the steady state for a long waveguide, but adds the ability of analyzing waveguides of finite lengths, showing transients as they evolve and settle to the dominant mode down the line, and offers numerical implementation speeds that are typically an order-of-magnitude faster than those previously reported for the mode-matching method. This approach may also be easily extended to analyze iris lines with mechanical imperfections (e.g. misalignments or aperiodic defects), allowing for investigations of performance sensitivity against manufacturing tolerances.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源