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Optimizing astrophotonic spatial reformatters using simulated on-sky performance

机译:使用模拟的天空性能优化天体光子空间重组仪

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One of the most useful techniques in astronomical instrumentation is image slicing. It enables a spectrograph to have a more compact angular slit, whilst retaining throughput and increasing resolving power. Astrophotonic components like the photonic lanterns and photonic reformatters can be used to replace bulk optics used so far. This study investigates the performance of such devices using end-to-end simulations to approximate realistic on-sky conditions. It investigates existing components, tries to optimize their performance and aims to understand better how best to design instruments to maximize their performance. This work complements the recent work in the field and provides an estimation for the performance of the new components.
机译:天文仪器中最有用的技术之一是图像切片。它使光谱仪具有更紧凑的角度狭缝,同时保留了产量并提高了分辨能力。天体光子组件(例如光子灯笼和光子重整器)可用于替代迄今为止使用的大块光学器件。这项研究使用端到端模拟来逼近现实的空中条件,研究了此类设备的性能。它研究了现有组件,试图优化它们的性能,旨在更好地了解如何最好地设计仪器以使其性能最大化。这项工作是对本领域最新工作的补充,并对新组件的性能进行了估算。

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