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首页> 外文期刊>The Astrophysical Journal. Letters >SMASH 1: A VERY FAINT GLOBULAR CLUSTER DISRUPTING IN THE OUTER REACHES OF THE LMC?
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SMASH 1: A VERY FAINT GLOBULAR CLUSTER DISRUPTING IN THE OUTER REACHES OF THE LMC?

机译:讨论1:LMC的外部区域中是否存在非常模糊的球状集群破坏?

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摘要

We present the discovery of a very faint stellar system, SMASH 1, that is potentially a satellite of the Large Magellanic Cloud. Found within the Survey of the MAgellanic Stellar History (SMASH), SMASH 1 is a compact (r(h) 9.1(-3.4)(+5.9)pc) and very low luminosity (M-V = -1.0 +/- 0.9, L-V = 10(2.3 +/- 0.4) L-circle dot) stellar system that is revealed by its sparsely populated main sequence and a handful of red giant branch candidate member stars. The photometric properties of these stars are compatible with a metal-poor ([Fe/H] = -2.2) and old (13 Gyr) isochrone located at a distance modulus of similar to 18.8, i.e., a distance of similar to 57 kpc. Situated at 11 degrees.3 from the LMC in projection, its three-dimensional distance from the Cloud is similar to 13 kpc, consistent with a connection to the LMC, whose tidal radius is at least 16 kpc. Although the nature of SMASH 1 remains uncertain, its compactness favors it being a stellar cluster and hence dark-matter free. If this is the case, its dynamical tidal radius is only less than or similar to 19 pc at this distance from the LMC, and smaller than the system's extent on the sky. Its low luminosity and apparent high ellipticity (epsilon = 0.62(-0.21)(+0.17)) with its major axis pointing toward the LMC may well be the tell-tale sign of its imminent tidal demise.
机译:我们介绍了一个非常微弱的恒星系统SMASH 1的发现,它可能是大型麦哲伦星云的卫星。 SMASH 1位于麦哲伦星史调查(SMASH)中,结构紧凑(r(h)9.1(-3.4)(+ 5.9)pc),发光度极低(MV = -1.0 +/- 0.9,LV = 10(2.3 +/- 0.4)L圆点)恒星系统,其稀疏的主要序列和少数红色巨型分支候选成员恒星揭示了这一点。这些恒星的光度学特性与贫金属([Fe / H] = -2.2)和陈旧的(13 Gyr)异位酮兼容,其距离模量近似于18.8,即,近似于57 kpc。投影与LMC的距离为11度3,与云的三维距离约为13 kpc,这与到LMC的潮汐半径至少为16 kpc的连接一致。尽管SMASH 1的性质仍不确定,但其紧凑性使其成为恒星簇,因此无暗物质。如果是这种情况,那么在距LMC一定距离处,其动态潮流半径仅小于或类似于19 pc,并且小于系统在天空中的延伸范围。它的低光度和明显的高椭圆率(ε= 0.62(-0.21)(+ 0.17)),其主轴指向LMC,很可能是潮汐即将消亡的明显迹象。

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