论文标题

Mnells:附近的缪斯

MNELLS: The MUSE Nearby Early-Type Galaxy Lens Locator Survey

论文作者

Collier, William P., Smith, Russell J., Lucey, John R.

论文摘要

低红移强透镜星系可以提供早期类型星系(ETG)中恒星质量与光比的稳健测量值,从而限制了恒星初始质量函数(IMF)的变化。目前,只有少数这样的系统是已知的。在这里,我们报告了盲目搜索重力透度发射线来源的第一个结果,这是52 $ z $ $ <$ <$ <$ 0.07的ETGS与Muse Integral Field Spectroscoppocy。对于16个星系,获得了新的观察结果,而从档案数据中分析了其他36个。该项目以前已经产生了一个确认的星系尺度强镜(J0403-0239),我们在较早的论文中进行了报道。此后,J0403-0239收到了后续观察结果,该观察表明了我们较早的IMF结果的支持。还发现了三个集群尺度,因此还发现了透镜系统(A4059,A2052和AS555的中央星系)。对于另外九个星系,我们在6个Arcsec中检测到一个单独的模仿但密封的源(包括一个具有三种不同红移来源的候选者);可以利用此类案例来得出IMF质量进出因子$α$的上限。将新镜头和新的上限结合在一起,与先前发现的系统相结合,我们推断出平均$ \langleα\ rangle $ = 1.06 $ \ pm $ $ $ 0.08(在本质上散布上是边缘化的),这与6 $ n $ c $ never like like IMF($α$ = 1.55)不一致。我们通过注射和回收模拟来源测试了这些短曝光MUSE观察中的检测阈值,并预测,预计二十五个观察结果将产生新的强透镜系统。我们的观察结果与这种预期的产量一致。

Low-redshift strong-lensing galaxies can provide robust measurements of the stellar mass-to-light ratios in early-type galaxies (ETG), and hence constrain variations in the stellar initial mass function (IMF). At present, only a few such systems are known. Here, we report the first results from a blind search for gravitationally-lensed emission line sources behind 52 massive $z$ $<$ 0.07 ETGs with MUSE integral field spectroscopy. For 16 galaxies, new observations were acquired, whilst the other 36 were analysed from archival data. This project has previously yielded one confirmed galaxy-scale strong lens (J0403-0239) which we report in an earlier paper. J0403-0239 has since received follow-up observations, presented here, which indicate support for our earlier IMF results. Three cluster-scale, and hence dark-matter-dominated, lensing systems were also discovered (central galaxies of A4059, A2052 and AS555). For nine further galaxies, we detect a singly-imaged but closely-projected source within 6 arcsec (including one candidate with sources at three different redshifts); such cases can be exploited to derive upper limits on the IMF mass-excess factor, $α$. Combining the new lens and new upper limits, with the previously-discovered systems, we infer an average $\langle α\rangle$ = 1.06 $\pm$ 0.08 (marginalised over the intrinsic scatter), which is inconsistent with a Salpeter-like IMF ($α$ = 1.55) at the 6$σ$ level. We test the detection threshold in these short-exposure MUSE observations with the injection and recovery of simulated sources, and predict that one in twenty-five observations is expected to yield a new strong-lens system. Our observational results are consistent with this expected yield.

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