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Expected observing efficiency of the Maunakea Spectroscopic Explorer (MSE)

机译:预计毛皮谱勘探器(MSE)的观察效率

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The Maunakea Spectroscopic Explorer (MSE) will obtain millions of spectra each year in the optical to near-infrared, at low (E approx- 3,000) to high (R approx- 40,000) spectral resolution by observing >4,000 spectra per pointing via a highly multiplexed fiber-fed system. Key science programs for MSE include black hole reverberation mapping, stellar population analysis of faint galaxies at high redshift, and sub-km/s velocity accuracy for stellar astrophysics. One key metric of the success of MSE will be its survey speed, i.e. how many spectra of good signal-to-noise ratio will MSE be able to obtain every night and every year. This is defined at the higher level by the observing efficiency of the observatory and should be at least 80%, as indicated in the Science Requirements. In this paper we present the observing efficiency budget developed for MSE based on historical data at the Canada-France-Hawaii Telescope and other Maunakea Observatories. We describe the typical sequence of events at night to help us compute the observing efficiency and how we envision to optimize it to meet the science requirements.
机译:所述Maunakea分光探测器(MSE)将得到每年数百万光谱中的光到近红外,在低(E approx- 3000),以高通过观察(R approx- 40,000)的光谱分辨率>每通过一个高度指向4000光谱多路复用光纤系统。 MSE的关键科学计划包括黑洞混响映射,高射频的微弱星系的恒星种群分析,以及恒星天体物理学的亚km / s速度精度。 MSE成功的一个关键指标将是其调查速度,即,良好信噪比的光谱将能够每年和每年获得每一夜。这是通过观测所效率的较高水平定义,并且应该至少为80%,如科学要求所示。在本文中,我们介绍了基于加拿大 - 法国 - 夏威夷望远镜和其他Maunakea观察者的历史数据为MSE开发的观察效率预算。我们在夜间描述了典型的事件序列,以帮助我们计算观察效率以及我们如何识别,以优化它以满足科学要求。

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