论文标题

CEN A组中矮球星系的特性:恒星种群,内部动力学和心形Halpha环

The properties of dwarf spheroidal galaxies in the Cen A group: Stellar populations, internal dynamics, and a heart-shaped Halpha ring

论文作者

Müller, Oliver, Fahrion, Katja, Rejkuba, Marina, Hilker, Michael, Lelli, Federico, Lutz, Katharina, Pawlowski, Marcel S., Coccato, Lodovico, Anand, Gagandeep S., Jerjen, Helmut

论文摘要

矮球星系(DSPHS)已在当地组进行了广泛的研究,但是它们的低亮度和表面亮度使得在更遥远的星系组中相似的作品。现代仪器解锁了在其他环境中仔细检查这些微弱系统的可能性,从而扩大了组属性的参数空间。我们使用Muse光谱研究研究CEN A的14个已知或怀疑的DSPH卫星的性质。十二个目标被证实是基于径向速度的小组成员。两个目标是50 MPC的背景星系:KK 198是一个面对面的螺旋星系,DW1315-45是一个超湿的星系,有效半径为2300 PC。 CEN A组的12个确认的DSPH成员具有旧的和金属贫困的恒星种群,并遵循本地组矮星系定义的恒星金属性 - 露光关系。在三个最亮的矮星系中(KK 197,KKS 55和KKS 58)中,我们确定了kK 197中的球状簇以及一个行星星云,尽管它与该星系和/或CEN A的扩展光环的关联尚不确定。使用四个离散的示踪剂,我们测量了KK 197的速度分散和动力学质量。该DSPH似乎是暗物质的,并且位于不确定性内星形星系的径向加速关系的关系。它也与修改后的牛顿动力学(MOND)所产生的预测一致。令人惊讶的是,在矮kk 203中,我们发现了一个延长的halpha戒指。仔细检查哈勃太空望远镜光度法显示,年龄在30-300 MYR之间的恒星形成非常低。 HALPHA排放很可能与40 Myr Old Supernova残留物有关,尽管其起源的其他可能性不能完全排除。

Dwarf spheroidal galaxies (dSphs) have been extensively investigated in the Local Group, but their low luminosity and surface brightness make similar work in more distant galaxy groups challenging. Modern instrumentation unlocks the possibility of scrutinizing these faint systems in other environments, expanding the parameter space of group properties. We use MUSE spectroscopy to study the properties of 14 known or suspected dSph satellites of Cen A. Twelve targets are confirmed to be group members based on their radial velocities. Two targets are background galaxies at 50 Mpc: KK 198 is a face-on spiral galaxy, and dw1315-45 is an ultra-diffuse galaxy with an effective radius of 2300 pc. The 12 confirmed dSph members of the Cen A group have old and metal-poor stellar populations and follow the stellar metallicity-luminosity relation defined by the dwarf galaxies in the Local Group. In the three brightest dwarf galaxies (KK 197, KKs 55, and KKs 58), we identify globular clusters, as well as a planetary nebula in KK 197, although its association with this galaxy and/or the extended halo of Cen A is uncertain. Using four discrete tracers, we measure the velocity dispersion and dynamical mass of KK 197. This dSph appears dark matter dominated and lies on the radial acceleration relation of star-forming galaxies within the uncertainties. It also is consistent with predictions stemming from modified Newtonian dynamics (MOND). Surprisingly, in the dwarf KK 203 we find an extended Halpha ring. Careful examination of Hubble Space Telescope photometry reveals a very low level of star formation at ages between 30-300 Myr. The Halpha emission is most likely linked to a 40 Myr old supernova remnant, although other possibilities for its origin cannot be entirely ruled out.

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