首页> 外文会议>Advances in Stellar Interferometry pt.2 >A Combined Nulling and Imaging Pupil-Plane Beam-Combiner for DARWIN
【24h】

A Combined Nulling and Imaging Pupil-Plane Beam-Combiner for DARWIN

机译:DARWIN的组合式零位和成像瞳面光束组合器

获取原文
获取原文并翻译 | 示例

摘要

The primary goal of DARWIN is to detect earth-like extrasolar planets and to search for biomarkers. This is achieved by means of nulling interferometry, using three free-flying telescopes and a Beam-Combiner (BC) hub. DARWIN will be able to perform astrophysical imaging with high spectral and spatial resolution. Should one of Darwin's telescope flyers fail, then Darwin's capability of detecting earth-sized exo-planets is dramatically reduced. However, with only two telescopes the imaging mode can continue operating with minimal performance degradation, thus ensuring mission success. This work describes a trade-off study between four conceptual three-beam BC's, that are capable of performing both as a miller and as an imager. A proposed breadboard design will demonstrate end-to-end Fringe-Tracking (FT) and Optical Path-Length (OPL) control. The BC concept is based on a pupil-plane (Michelson) beam combination scheme. Pupil-plane imaging BC's offer a large overlap in terms of optical layout with the nulling BC concept, making it possible to develop a combined nulling- and imaging BC. This means that a reduced number of optical components can be used compared to a scheme with separate BC's. The BC concept inherently compensates for unequal OPL's, which in ground-based interferometers is compensated for by long stroke Optical Delay Lines (ODL's).
机译:DARWIN的主要目标是探测类似于地球的太阳系行星并寻找生物标记。这是通过使用三个自由飞行望远镜和Beam-Combiner(BC)集线器通过零干涉测量法实现的。 DARWIN将能够以高光谱和空间分辨率执行天体物理成像。如果达尔文的望远镜飞行器之一发生故障,那么达尔文探测地球大小系外行星的能力将大大降低。但是,仅使用两个望远镜,成像模式就可以继续运行,而性能下降最小,从而确保了任务的成功。这项工作描述了四个概念性的三光束BC之间的权衡研究,这些BC既可以用作铣床,也可以用作成像仪。拟议的面包板设计将演示端到端边缘跟踪(FT)和光程长度(OPL)控制。 BC概念基于光瞳平面(Michelson)光束组合方案。瞳面成像BC在光学布局方面与零位BC概念有很大的重叠,这使得开发零位和成像BC组合成为可能。这意味着与具有单独BC的方案相比,可以使用更少数量的光学组件。 BC概念固有地补偿了不相等的OPL,这在地面干涉仪中由长行程光学延迟线(ODL)来补偿。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号