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IRAC Band Period-Luminosity Relations from LMC Cepheids: Application to Three Nearby Galaxies

机译:来自LMC Cepheids的Irac Band时期 - 发光度关系:应用于三个附近的星系

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It is well-known in the cosmology community that an accurate determination of the Hubble constant (Ho), to within few percent, can be used to break the degeneracy between Ω_M and w in CMB measurements. The current uncertainty in H_0 from the HST Key Project is about 10%. In contrast future observations by the James Webb Space Telescope (JWST) have the potential to deliver an H_0 measurement accurate to under a few percent. This is because JWST will operate in the near- and mid-infrared, thus significantly reducing the influence of extinction. Motivated by this, we derive Spitzer IRAC band period-luminosity (PL) relations (the Leavitt Law) from the Large Magellanic Cloud Cepheids which can be applied to future distance scale measurements with JWST. To test these PL relations, we applied the IRAC band PL relations to the three nearby galaxies (NGC 6822, IC 1613 & WLM), where the Cepheid data were found from the Spitzer Archival data, and derive the distance moduli (in IRAC bands) to these galaxies. We also compare our results to the distance moduli derived using the reddening-free Wesenheit function in optical.
机译:它在宇宙学社区中众所周知,可以使用准确地确定霍布尔常数(HO),以内的百分比范围内,可用于在CMB测量中打破ω_m和w之间的退化。 HST关键项目H_0的当前不确定性约为10%。相比之下,James Webb Space望远镜(JWST)的未来观察有可能以百分比递送H_0测量值。这是因为JWST将在近乎和中红外运行,从而显着降低了灭绝的影响。由此激励,我们从大型麦格兰山云头发中衍生Spitzer IRAC频带周期亮度(PL)关系(PELVITT法),其可以应用于JWST的未来距离测量测量。为了测试这些PL关系,我们将Irac Band Pl关系应用于三个附近的星系(NGC 6822,IC 1613和WLM),其中来自Spitzer档案数据,并导出距离模数(在IRAC频带中)对这些星系。我们还将我们的结果与光学的无亮的Wesenheit函数派生的距离模数进行比较。

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