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Optical Modelling using Gaussian Beam Modesfor the Terahertz Band

机译:使用高斯光束模式的光学建模到太赫兹乐队

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Special approaches unique to the waveband are required for the modelling of terahertz optical systems. Ray tracing is inadequate because in typical instruments the propagating beams are not very many wavelengths in diameter and a "quasi-optical" approach is required in which Fresnel diffraction effects can be efficiently and accurately simulated. Typically, it is also necessary to be able to simulate the coupling of quasi-optical beams to feed antenna structures to predict optical performance. In many systems the beams can be considered to be coherent and their propagation through a beam guide consisting of re-focussing elements can be efficiently modelled using modal analysis, especially useful for quick design purposes, beam control and optimisation. This modal approach has been extended to allow for aberrations and truncation particularly relevant in compact mirror based systems. At the same time physical optics, although computationally intensive, is also a useful tool when detailed analysis is required, particularly for providing cross-polarisation information and high accuracy far-field beam patterns from large reflecting antennas, for example. However, modal analysis in general is a very powerful tool, which enables one also to understand issues associated with throughput when partially coherent systems are being considered. This is important for the efficient optical modelling of large arrays systems now being developed for next generation astronomical instrumentation. In the presentation, we will discuss these issues and present examples from real instrumentation. We also summarise our continuing work on the development of computationally efficient modelling tools for fast quasi-optical design and analysis.
机译:特别接近特有的波段所需要的太赫兹光学系统的建模。因为在典型的仪器传播光束不在直径和“准光”的方法非常多波长需要,其中菲涅耳衍射效应可以有效且精确地模拟光线跟踪是不充分的。通常情况下,它也有必要能够模拟准光束的耦合喂天线结构来预测的光学性能。在许多系统中,光束可以被认为是相干和通过由再聚焦元件的光束导引它们的传播可使用模态分析,以便快速设计的目的,光束控制和优化是特别有用的被有效地建模。这种模态方法已经被扩展,以允许对像差和截断在紧凑镜为基础的系统特别相关。与此同时物理光学,虽然计算密集的,也是一个有用的工具时,需要详细的分析,特别是用于提供从大反射天线的交叉偏振信息和高准确度远场光束图案,例如。然而,在一般模态分析是一个非常强大的工具,它使人们也明白与吞吐量相关的问题时,正在考虑部分相干系统。这是正在为下一代的天文仪器研制大型阵列系统的高效率光学建模重要。在介绍中,我们将讨论从真正的仪器这些问题,本发明的实例。我们也总结了对计算效率的建模工具快速准光学设计与分析我们发展的持续性工作。

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