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Could Jean-Dominique Cassini see the famous division in Saturn's rings?

机译:让jean-dominique cassini看到土星戒指中的着名师吗?

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Nowadays, astronomers want to observe gaps in exozodiacal disks to confirm the presence of exoplanets, or even make actual images of these companions. Four hundred and fifty years ago, Jean-Dominique Cassini did a similar study on a closer object: Saturn. After joining the newly created Observatoire de Paris in 1671, he discovered 4 of Saturn's satellites (Iapetus, Rhea, Tethys and Dione), and also the gap in its rings. He made these discoveries observing through the best optics at the time, made in Italy by famous opticians like Giuseppe Campani or Eustachio Divini. But was he really able to observe this black line in Saturn's rings? That is what a team of optical scientists from Observatoire de Paris - LESIA with the help of Onera and Institut d'Optique tried to find out, analyzing the lenses used by Cassini, and still preserved in the collection of the observatory. The main difficulty was that even if the lenses have diameters between 84 and 239 mm, the focal lengths are between 6 and 50 m, more than the focal lengths of the primary mirrors of future ELTs. The analysis shows that the lenses have an exceptionally good quality, with a wavefront error of approximately 50 nm rms and 200 nm peak-to-valley, leading to Strehl ratios higher than 0.8. Taking into account the chromaticity of the glass, the wavefront quality and atmospheric turbulence, reconstructions of his observations tend to show that he was actually able to see the division named after him.
机译:如今,天文学家希望观察新生型盘中的间隙,以确认外产的存在,甚至制造这些伴侣的实际图像。四百五十年前,让Jean-Dominique Cassini在更近的物体上做了类似的研究:土星。在1671年加入新创建的Joaltatoire de Paris后,他发现了土星的卫星(Iapetus,Rhea,Thethys和Dethys和Dethe)中的4个,以及它的戒指的差距。他通过当时的最佳光学器件观察了这些发现,在意大利通过像Giuseppe Campani或Eustachio Divini这样的着名眼镜师制作。但他真的能够在土星的戒指中观察这条黑线吗?这就是来自Oneara和Institut D'Optique的Mediematoire de Paris - Lesia的光学科学家团队试图找出,分析Cassini,仍然保留在天文台的收集中。主要难点是,即使镜片在84和239mm之间的直径之间,焦距也在6到50米之间,比未来埃特的主要镜子的焦距增加。该分析表明,镜片具有极好的质量,具有大约50nm rms和200nm峰的波前误差,导致高于0.8的Strehl比率。考虑到玻璃的色度,波前质量和大气湍流,他的观察的重建倾向于表明他实际上能够看到以他命名的司。

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