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首页> 外文期刊>The Astrophysical journal >A Near-infrared Period–Luminosity Relation for Miras in NGC 4258, an Anchor for a New Distance Ladder
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A Near-infrared Period–Luminosity Relation for Miras in NGC 4258, an Anchor for a New Distance Ladder

机译:NGC 4258中Miras的近红外周期-光度关系,这是新距离梯的锚点

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We present year-long, near-infrared (NIR) Hubble Space Telescope (HST) WFC3 observations of Mira variables in the water megamaser host galaxy NGC 4258. Miras are asymptotic giant branch variables that can be divided into oxygen- (O-) and carbon- (C-) rich subclasses. Oxygen-rich Miras follow a tight (scatter ~0.14 mag) period–luminosity relation (PLR) in the NIR and can be used to measure extragalactic distances. The water megamaser in NGC 4258 gives a geometric distance to the galaxy accurate to 2.6% that can serve to calibrate the Mira PLR. We develop criteria for detecting and classifying O-rich Miras with optical and NIR data as well as NIR data alone. In total, we discover 438 Mira candidates that we classify with high confidence as O-rich. Our most stringent criteria produce a sample of 139 Mira candidates that we use to measure a PLR. We use the OGLE-III sample of O-rich Miras in the Large Magellanic Cloud to obtain a relative distance modulus, μ 4258???μ LMC?=?10.95?±?0.01 (statistical)?±0.06 (systematic) mag, that is statistically consistent with the relative distance determined using Cepheids. These results demonstrate the feasibility of discovering and characterizing Miras using the NIR with the HST and the upcoming James Webb Space Telescope and using those Miras to measure extragalactic distances and determine the Hubble constant.
机译:我们提出了长达一年的近红外(HIR)哈勃太空望远镜(HST)WFC3观测,它是水超大型水星主星系NGC 4258中的Mira变量。Miras是渐近的巨型分支变量,可以分为氧气-(O-)和富含碳(C-)的子类。富氧的Miras在NIR中遵循严格的(散射〜0.14 mag)周期-光度关系(PLR),可用于测量河外距离。 NGC 4258中的水超大质量激子给出了到银河系的几何距离,精确到2.6%,可用于校准Mira PLR。我们开发了用于通过光学和NIR数据以及仅NIR数据检测和分类富含O的Miras的标准。总共,我们发现438个Mira候选人,我们将其高信度归为O-rich。我们最严格的标准产生了139个Mira候选人的样本,这些样本用于衡量PLR。我们使用大麦哲伦星云中富含O的Miras的OGLE-III样本来获得相对距离模量,μ4258?μLMCα=?10.95?±?0.01(统计量)?±0.06(系统性)量在统计上与使用造父变星确定的相对距离一致。这些结果证明了使用带有HST的NIR和即将到来的James Webb太空望远镜发现和表征Miras的可行性,并使用这些Miras测量银河外距离并确定哈勃常数。

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