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Laboratory validation of the dual-zone phase mask coronagraph in broadband light at the high-contrast imaging THD testbed

机译:高对比度成像THD测试台在宽带光下双区相位掩模冠冕仪的实验室验证

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Context. Specific high-contrast imaging instruments are mandatory to characterize circumstellar disks and exoplanets around nearby stars. Coronagraphs are commonly used in these facilities to reject the diffracted light of an observed star and enable direct imaging and spectroscopy of its circumstellar environment. One important property of the coronagraph is to be able to work in broadband light. Aims. Among several proposed coronagraphs, the dual-zone phase mask coronagraph is a promising solution for starlight rejection in broadband light. In this paper, we perform the first validation of this concept in laboratory. Methods. First, we consider the principle of the dual-zone phase mask coronagraph. Then, we describe the high-contrast imaging THD testbed, the manufacturing of the components, and the quality control procedures. Finally, we study the sensitivity of our coronagraph to low-order aberrations (inner working angle and defocus) and estimate its contrast performance. Our experimental broadband light results are compared with numerical simulations to check agreement with the performance predictions. Results. With the manufactured prototype and using a dark hole technique based on the self-coherent camera, we obtain contrast levels down to 2 × 10-8 between 5 and 17λ0/D in monochromatic light (640?nm). We also reach contrast levels of 4 × 10-8 between 7 and 17λ0/D in broadband (λ0 = 675?nm, Δλ = 250 and Δλ/λ0 = 40%), which demonstrates the excellent chromatic performance of the dual-zone phase mask coronagraph. Conclusions. The performance reached by the dual-zone phase mask coronagraph is promising for future high-contrast imaging instruments that aim to detect and spectrally characterize old or light gaseous planets.
机译:上下文。必须使用特定的高对比度成像仪器来表征附近恒星周围的绕星盘和系外行星。在这些设施中通常使用日冕仪来拒绝观测到的恒星的衍射光,并对其周星环境进行直接成像和光谱分析。日冕仪的一项重要特性是能够在宽带光下工作。目的在一些建议的日冕仪中,双区相位掩膜日冕仪是一种在宽带光中抑制星光的有前途的解决方案。在本文中,我们在实验室中对该概念进行了首次验证。方法。首先,我们考虑双区相位掩模电晕仪的原理。然后,我们描述了高对比度成像THD测试台,组件的制造以及质量控制程序。最后,我们研究了日冕仪对低阶像差(内部工作角度和散焦)的敏感性,并估计了其对比性能。我们将宽带光的实验结果与数值模拟进行比较,以验证与性能预测的一致性。结果。使用制造的原型并使用基于自相干相机的暗孔技术,我们在单色光(640?nm)中获得5和17λ0/ D之间的对比度水平低至2×10-8。在宽带中(λ0= 675?nm,Δλ= 250和Δλ/λ0= 40%),我们在7至17λ0/ D之间也达到了4×10-8的对比度水平,这证明了双区相的出色彩色性能面罩日冕仪。结论。双区相位掩模冠冕仪所达到的性能对于未来的高对比度成像仪器很有希望,该仪器旨在检测和光谱表征旧的或轻质的气态行星。

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