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Developing an ultra-stable single mode fiber spectrograph for adaptive optics assisted observation in the infrared

机译:开发用于自适应光学辅助红外观察的超稳定单模光纤光谱仪

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Ever more precise radial velocity instruments are needed to observe potential earth-like exoplanet targets that are beyond the range of current generation high resolution echelle spectrographs. Meanwhile, extreme adaptive optics systems at 8 meter class facilities have made ground based observations possible at the diffraction limit. In the field of Doppler spectroscopy, one way to take advantage of these AO capabilities is by the development of ultra-stable single mode fiber fed spectrographs.1 Coupling the light efficiently into SMFs with an extreme adaptive optics system offers significant advantage in removing modal noise, reducing instrument size, enabling superior environmental control and curbing cost. We report the design and challenges in building an ultra-stable spectrograph for the near infrared range. The design wavelength range is 650 to 1500 nm.
机译:需要更精确的径向速度仪器来观测潜在的类似于地球的系外行星目标,而这些目标却超出了当前高分辨率高分辨率埃歇尔光谱仪的范围。同时,在8米级设施上的极端自适应光学系统使在衍射极限处的地面观测成为可能。在多普勒光谱学领域,利用这些AO功能的一种方法是开发超稳定的单模光纤馈电光谱仪。1利用极端自适应光学系统将光有效地耦合到SMF中,在消除模态噪声方面具有显着优势。 ,减小仪器尺寸,实现卓越的环境控制和成本控制。我们报告了构建近红外范围超稳定光谱仪的设计和挑战。设计波长范围是650至1500 nm。

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