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A STELLAR VELOCITY DISPERSION FOR A STRONGLY LENSED, INTERMEDIATE-MASS QUIESCENT GALAXY AT z = 2.8

机译:在z = 2.8时强透镜,中间质量银河系的星速色散

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Measuring stellar velocity dispersions of quiescent galaxies beyond is observationally challenging. Such measurements require near-infrared spectra with a continuum detection of at least moderate signal to noise, often necessitating long integrations. In this paper, we present deep X-Shooter spectroscopy of one of only two known gravitationally lensed massive quiescent galaxies at . This galaxy is quadruply imaged, with the brightest images magnified by a factor of ~5. The total exposure time of our data is 9.8 hr on-source; however, the magnification, and the slit placement encompassing two images, provides a total equivalent exposure time of 215 hr. From this deep spectrum we measure a redshift of (), making this one of the highest redshift quiescent galaxies that is spectroscopically confirmed. We simultaneously fit both the spectroscopic and photometric data to determine stellar population parameters and conclude that this galaxy is relatively young (), of intermediate mass (), consistent with low dust content (), and has quenched only relatively recently. This recent quenching is confirmed by strong Balmer absorption, particularly (). Remarkably, this proves that at least some intermediate-mass galaxies have already quenched as early as . Additionally, we have measured a velocity dispersion of (), making this the highest-redshift quiescent galaxy with a dispersion measurement. We confirm that this galaxy falls on the same mass fundamental plane (MFP) as galaxies at z?=?2.2, consistent with little to no evolution in the MFP up to z?=?2.8. Overall this galaxy is proof of the existence of intermediate-mass quenched galaxies in the distant universe, and that lensing is a powerful tool for determining their properties with improved accuracy.
机译:测量静止星系以外的恒星速度散布在观测上具有挑战性。此类测量需要近红外光谱,且连续检测至少适度的信噪比,通常需要长积分。在本文中,我们介绍了仅两个已知的引力透镜大质量静态星系之一的深X-射手光谱。这个星系被四倍成像,最亮的图像放大了约5倍。我们的数据在源上的总曝光时间为9.8小时;但是,放大倍数和包含两个图像的缝隙位置提供的总等效曝光时间为215小时。从这个深光谱中,我们测量了()的红移,这使它成为光谱确认的最高红移静态星系之一。我们同时拟合了光谱数据和光度数据,以确定恒星种群参数,并得出结论:该星系相对年轻(),中等质量(),与低粉尘含量()一致,并且仅在最近才被淬灭。最近的淬灭被强Balmer吸收所证实,尤其是()。值得注意的是,这证明至少某些中等质量星系早在之前就已经淬灭了。此外,我们还测量了()的速度色散,使其成为具有色散测量值的最高红移静态星系。我们确认,该星系与z == 2.2的星系落在相同的质量基本平面(MFP)上,与MFP直到z == 2.8的演化几乎一致或没有。总的来说,这个星系证明了遥远宇宙中存在中间质量淬灭星系,并且透镜是确定其性质并提高精度的有力工具。

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