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采用电子连接望远镜的光学孔径合成。

Optical aperture synthesis with electronically connected telescopes.

作者信息

Dravins Dainis, Lagadec Tiphaine, Nuñez Paul D

机构信息

Lund Observatory, Lund University, Box 43, Lund SE-22100, Sweden.

Collège de France, 11 Place Marcelin Berthelot, Paris FR-75005, France.

出版信息

Nat Commun. 2015 Apr 16;6:6852. doi: 10.1038/ncomms7852.

Abstract

Highest resolution imaging in astronomy is achieved by interferometry, connecting telescopes over increasingly longer distances and at successively shorter wavelengths. Here, we present the first diffraction-limited images in visual light, produced by an array of independent optical telescopes, connected electronically only, with no optical links between them. With an array of small telescopes, second-order optical coherence of the sources is measured through intensity interferometry over 180 baselines between pairs of telescopes, and two-dimensional images reconstructed. The technique aims at diffraction-limited optical aperture synthesis over kilometre-long baselines to reach resolutions showing details on stellar surfaces and perhaps even the silhouettes of transiting exoplanets. Intensity interferometry circumvents problems of atmospheric turbulence that constrain ordinary interferometry. Since the electronic signal can be copied, many baselines can be built up between dispersed telescopes, and over long distances. Using arrays of air Cherenkov telescopes, this should enable the optical equivalent of interferometric arrays currently operating at radio wavelengths.

摘要

天文学中的最高分辨率成像通过干涉测量法实现,该方法将望远镜连接起来,距离越来越长,波长越来越短。在此,我们展示了由一组独立光学望远镜产生的首批可见光衍射极限图像,这些望远镜仅通过电子方式连接,彼此之间没有光学链路。利用一组小型望远镜,通过强度干涉测量法在成对望远镜之间的180条基线上测量光源的二阶光学相干性,并重建二维图像。该技术旨在通过千米级基线进行衍射极限光学孔径合成,以达到能够显示恒星表面细节甚至凌日系外行星轮廓的分辨率。强度干涉测量法规避了限制普通干涉测量的大气湍流问题。由于电子信号可以复制,因此可以在分散的望远镜之间以及长距离上建立许多基线。使用空气切伦科夫望远镜阵列,这应该能够实现目前在射电波长运行的干涉阵列的光学等效物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72d4/4410625/38103a7e8dd0/ncomms7852-f1.jpg

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