论文标题

Zwicky瞬态设施和球形簇:II型头孢菌素的周期亮度和周期性关系

Zwicky Transient Facility and Globular Clusters: The Period-Luminosity and Period-Wesenheit Relations for Type II Cepheids

论文作者

Ngeow, Chow-Choong, Bhardwaj, Anupam, Henderson, Jing-Yi, Graham, Matthew J., Laher, Russ R., Medford, Michael S., Purdum, Josiah, Rusholme, Ben

论文摘要

我们介绍了第一个Gri波段周期 - 亮度(PL)和周期 - 旋转(PW)关系,该关系基于来自Zwicky Transient设施的光度数据,位于18个球状簇中的37种II型头孢虫(以下简称TIIC)。我们还使用球状簇的最新均匀距离更新了24个球状簇中58个TIIC的BV IJHK波段绝对大小。当使用相同的距离和红色样本时,发现G/R/I和B/V/I带PL关系的斜率在统计上是一致的。我们采用了在球状簇中对RI波段PL/PW关系的校准,以估计Pandromeda项目的〜270 TIIC的距离与M31的距离。使用校准的RI波段PW关系获得的M31的距离模量与基于经典头孢虫的最新测定非常吻合。但是,使用校准的R-和I波段PL关系得出的距离模量在系统上较小〜0.2 mag,这表明PL关系可能会有其他系统误差。最后,我们还得出了周期(PC)关系,这是我们的TIIC样本首次获得Q-索引无红的时期Q索引(PQ)关系。发现基于(R-I)和近红外颜色以及PQ关系的PC关系相对独立于脉动周期。

We present the first gri-band period-luminosity (PL) and period-Wesenheit (PW) relations for 37 Type II Cepheids (hereafter TIIC) located in 18 globular clusters based on photometric data from the Zwicky Transient Facility. We also updated BV IJHK-band absolute magnitudes for 58 TIIC in 24 globular clusters using the latest homogeneous distances to the globular clusters. The slopes of g/r/i and B/V/I band PL relations are found to be statistically consistent when using the same sample of distance and reddening. We employed the calibration of ri-band PL/PW relations in globular clusters to estimate a distance to M31 based on a sample of ~270 TIIC from the PAndromeda project. The distance modulus to M31, obtained using calibrated ri-band PW relation, agrees well with the recent determination based on classical Cepheids. However, distance moduli derived using the calibrated r- and i-band PL relations are systematically smaller by ~0.2 mag, suggesting there are possible additional systematic error on the PL relations. Finally, we also derive the period-color (PC) relations and for the first time the period-Q-index (PQ) relations, where the Q-index is reddening-free, for our sample of TIIC. The PC relations based on (r-i) and near-infrared colors and the PQ relations are found to be relatively independent of the pulsation periods.

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