首页> 外文会议>Optical and Infrared Interferometry and Imaging Conference >Observing inside the coronagraphic regime with nulling interferometry
【24h】

Observing inside the coronagraphic regime with nulling interferometry

机译:用缺斑干涉测量术中观察血管结论

获取原文

摘要

Interferometry can reach high resolution not only with separated apertures, but also across a single telescope aperture. Indeed, as shown by the Palomar Fiber Nuller (PFN). cross-aperture nulling interferometry can detect companions at much smaller angular offsets from stars than coronagraphy on the same telescope can reach. In particular, the PFN was able to detect the faint secondary companion of the spectroscopic binary η Peg at roughly a third of the telescope's diffraction beamwidth, with null depth accuracies of several 10~(-4), while also demonstrating the use of baseline rotation to detect companions, as originally envisioned for space-based nullers. Cross-aperture nulling observations can thus resolve separations well inside the central core of a telescope's diffraction beam. Here we summarize the lessons learned from the PFN's demonstration experiments, as well as from larger mid-infrared nullers, pointing toward potential performance improvements that could enable a variety of nulling-based exoplanet and dust observations interior to the coronagraphic regime on larger telescopes. Two interesting new developments are the grating nuller, in which both beam combination and phase shifting are provided by the same optical element, and the vortex fiber nuller, which straddles the coronagraphic and separated-subaperture interferometric regimes.
机译:干涉测量法不仅可以达到高分辨率,不仅具有分离的孔,而且横跨单个望远镜孔径。实际上,如Palomar纤维Nuller所示(PFN)所示。横孔归零干涉可以在从分比相同的望远镜可以达到coronagraphy小得多角度偏移检测同伴。特别地,PFN能够在大约三分之一的望远镜的衍射波束上检测光谱二进制ηPEG的微弱的次要伴侣,其中零深度精度为几十〜(4),同时也展示了基线旋转的使用要检测同伴,最初设想用于基于空间的空位。因此,交叉孔径无效观察可以在望远镜的衍射光束的中心芯内部分离良好的分离。在这里,我们总结了从PFN的演示实验的经验教训,以及来自nullers较大的中红外,向潜在的性能改进,可以使各种指向零位为基础的系外行星和灰尘观察内部的更大的望远镜的日冕制度。两个有趣的新发展是光栅无效,其中光束组合和相移由相同的光学元件和涡旋纤维无空间提供,涡旋纤维无液体,其跨越血管血管和分离的子射线干涉式制度。

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