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The SLUGGS Survey: A New Mask Design to Reconstruct the Stellar Populations and Kinematics of Both Inner and Outer Galaxy Regions

机译:SLUGGS调查:一种新的口罩设计,可重构内外银河区域的恒星种群和运动学

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摘要

Integral field unit spectrographs allow the 2D exploration of the kinematics and stellar populations of galaxies, although they are generally restricted to small fields-of-view. Using the large field-of-view of the DEIMOS multislit spectrograph on Keck and our Stellar Kinematics using Multiple Slits technique, we are able to extract sky-subtracted stellar light spectra to large galactocentric radii. Here, we present a new DEIMOS mask design named SuperSKiMS that explores large spatial scales without sacrificing high spatial sampling. We simulate a set of observations with such a mask design on the nearby galaxy NGC 1023, measuring stellar kinematics and metallicities out to where the galaxy surface brightness is orders of magnitude fainter than the sky. With this technique we also reproduce the results from literature integral field spectroscopy in the innermost galaxy regions. In particular, we use the simulated NGC 1023 kinematics to model its total mass distribution to large radii, obtaining comparable results with those from published integral field unit observation. Finally, from new spectra of NGC 1023, we obtain stellar 2D kinematics and metallicity distributions that show good agreement with integral field spectroscopy results in the overlapping regions. In particular, we do not find a significant offset between our Stellar Kinematics using Multiple Slits and the ATLAS3Dstellar velocity dispersion at the same spatial locations.
机译:整体场单位光谱仪可以对星系的运动学和恒星族进行二维探索,尽管它们通常限于小视野。使用Keck上DEIMOS多狭缝光谱仪的大视野以及使用多重狭缝技术的恒星运动学,我们能够将减去天空的恒星光谱提取到大的以恒心为中心的半径。在这里,我们介绍了一种名为SuperSKiMS的新型DEIMOS掩模设计,该设计可探索大型空间尺度而不会牺牲高空间采样率。我们在附近的星系NGC 1023上使用这种蒙版设计模拟了一组观测结果,测量了恒星运动学和金属性,直到银河系表面亮度比天空微弱几个数量级。通过这种技术,我们还可以再现来自最内层银河区域的文献积分场光谱学的结果。特别是,我们使用模拟的NGC 1023运动学来模拟其到大半径的总质量分布,从而获得与已发表的积分场单位观测结果相当的结果。最后,从NGC 1023的新光谱中,我们获得了恒星的二维运动学和金属分布,与重叠区域中的积分场光谱结果显示出良好的一致性。特别是,在相同的空间位置,使用多重缝隙的恒星运动学与ATLAS3Dstellar速度色散之间没有明显的偏移。

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