论文标题

高对比度证明了垂直的涡旋冠冕

High-contrast Demonstration of an Apodized Vortex Coronagraph

论文作者

Llop-Sayson, Jorge, Ruane, Garreth, Mawet, Dimitri, Jovanovic, Nemanja, Coker, Carl T., Delorme, Jacques-Robert, Echeverri, Daniel, Fucik, Jason, Riggs, A J Eldorado, Wallace, J. Kent

论文摘要

高对比度成像是在太阳能恒星周围直接检测和表征地球样行星的主要途径。设计巧妙的内部冠冕抑制了恒星的光线,从而揭示了难以捉摸的情节同伴。但是,未来的大型望远镜(直径$> $> $ 4〜m)可能会分割的主镜子,这会导致不需要的恒星光的额外衍射。在这里,我们介绍了一个垂体涡流(AVC)的第一个高对比度实验室演示,其中将速度的旋转器放置在涡旋局灶平面掩模的上游,以通过分段的光圈提高其性能。在数值上优化了灰度尺度,以产生对微弱伴侣的更好敏感性,假设光圈形状类似于luvoir-b概念。使用对单方面的暗洞的波前传感和控制,我们在775〜nm的单色光中实现了$ 2 \ times10^{ - 8} $的原始对比度,并在10 \%的带宽中以$ 4 \ times10^{ - 8} $的原始对比度为$ 4 \ times10^{ - 8} $。这些结果为新的Coronagraph设计系列开辟了道路,最适合下一代分段的太空望远镜。

High contrast imaging is the primary path to the direct detection and characterization of Earth-like planets around solar-type stars; a cleverly designed internal coronagraph suppresses the light from the star, revealing the elusive circumstellar companions. However, future large-aperture telescopes ($>$4~m in diameter) will likely have segmented primary mirrors, which causes additional diffraction of unwanted stellar light. Here we present the first high contrast laboratory demonstration of an apodized vortex coronagraph (AVC), in which an apodizer is placed upstream of a vortex focal plane mask to improve its performance with a segmented aperture. The gray-scale apodization is numerically optimized to yield a better sensitivity to faint companions assuming an aperture shape similar to the LUVOIR-B concept. Using wavefront sensing and control over a one-sided dark hole, we achieve a raw contrast of $2\times10^{-8}$ in monochromatic light at 775~nm, and a raw contrast of $4\times10^{-8}$ in a 10\% bandwidth. These results open the path to a new family of coronagraph designs, optimally suited for next-generation segmented space telescopes.

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