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Probing unexplored territories with MUSE: a second generation instrument for the VLT

机译:冥想未开发的地区:vlt的第二代工具

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The Multi Unit Spectroscopic Explorer (MUSE) is a second-generation VLT panoramic integral-field spectrograph under preliminary design study. MUSE has a field of 1*1 arcmin2 sampled at 0.2*0.2 arcsec2 and is assisted by the VLT ground layer adaptive optics ESO facility using four laser guide stars. The simultaneous spectral range is 0.465-0.93 μm, at a resolution of R~3000. MUSE couples the discovery potential of a large imaging device to the measuring capabilities of a high-quality spectrograph, while taking advantage of the increased spatial resolution provided by adaptive optics. This makes MUSE a unique and tremendously powerful instrument for discovering and characterizing objects that lie beyond the reach of even the deepest imaging surveys. MUSE has also a high spatial resolution mode with 7.5*7.5 arcsec2 field of view sampled at 25 milli-arcsec. In this mode MUSE should be able to obtain diffraction limited data-cubes in the 0.6-0.93 μm wavelength range. Although the MUSE design has been optimized for the study of galaxy formation and evolution, it has a wide range of possible applications; e.g. monitoring of outer planets atmosphere, environment of young stellar objects, super massive black holes and active nuclei in nearby galaxies or massive spectroscopic surveys of stellar fields in the Milky Way and nearby galaxies.
机译:多单位光谱探险器(Muse)是初步设计研究的第二代VLT全景积分积分。 MUSE具有1 * 1 ARCMIN2的领域,以0.2 * 0.2 ARCSEC2采样,并由VLT地层自适应光学ESO设施辅助,使用四个激光导向恒星。同时光谱范围为0.465-0.93μm,处于R〜3000的分辨率。缪斯将大型成像装置的发现电位耦合到高质量光谱仪的测量能力,同时利用自适应光学器件提供的增加的空间分辨率。这使得缪斯是一种独特而极大的强大的仪器,用于发现和表征位于甚至最深的成像调查范围之外的物体。 Muse还具有7.5 * 7.5 ArcSec2视野的高空间分辨率模式,在25毫米 - arcsec采样。在这种模式中,Muse应该能够在0.6-0.93μm波长范围内获得衍射有限的数据立方体。虽然缪斯设计已经针对Galaxy形成和进化的研究进行了优化,但它具有各种可能的应用;例如监测外部行星气氛,年轻恒星物体环境,附近的星系中的超大巨大的黑洞和活性核,或者在银河系中的恒星领域的巨大光谱调查和附近的星系。

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