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Detection and spectroscopy of exo-planets like Earth

机译:exo-plants等地球的检测和光谱

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Planets with mass similar to Jupiter's are now known to orbit nearby stars. Are there also planets like Earth? If so, their thermal emission should be directly detectable, and thermal spectra could identify the strong features of carbon dioxide, water and ozone at the levels seen in Earth. But the very close angular separation (approximately 0.1 arcsec) and huge brightness difference (approximately 10$+7$/) between a star and such a planet present a technical challenge. Space interferometry could in principle solve both problems, by using destructive interference to cancel out the stellar emission, and aperture synthesis to recover high angular resolution images. We show how these two functions conflict, and point to a new interferometer design which allows them to be reconciled. One key technical challenge is to combine beams with strictly controlled amplitude and achromatic phase inversions, so as to cancel the stellar disc flux by a factor of a million. We show how refractive elements analogous to an achromatic lens can be used for this purpose.
机译:现在,与木星类似的行星现在已知在附近的轨道上。也有像地球这样的行星吗?如果是这样,它们的热排放应该是直接可检测的,并且热谱可以识别地球中看到的水平的二氧化碳,水和臭氧的强特征。但是,近距离分离(约0.1 arcsec)和巨大的亮度差(大约10美元+ 7美元/)在明星和这样的星球之间存在技术挑战。空间干涉测量通常可以通过使用破坏性干扰来抵消恒星发射,孔径合成来解决两个问题,以恢复高角度分辨率图像。我们展示这两个功能如何冲突,并指向新的干涉仪设计,允许它们协调。一个关键的技术挑战是将光束与严格控制的幅度和消色差相位联合起来,以取消恒星盘通量百万倍。我们展示了如何为此目的使用类似于消色差镜片的折射元件。

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