The Mira Distance to M101 and a 4% Measurement of H0
arXiv:2312.08423 · doi:10.3847/1538-4357/ad1ff8
Abstract
The giant spiral galaxy M101 is host to the nearest recent Type Ia Supernova (SN 2011fe) and thus has been extensively monitored in the near-infrared to study the late-time lightcurve of the supernova. Leveraging this existing baseline of observations, we derive the first Mira-based distance to M101 by discovering and classifying a sample of 211 Miras with periods ranging from 240 to 400 days in the supernova field. Combined with new HST WFC3/IR channel observations, our dataset totals 11 epochs of F110W (HST ) and 13 epochs of F160W (HST ) data spanning 2900 days. We adopt absolute calibrations of the Mira Period-Luminosity Relation based on geometric distances to the Large Magellanic Cloud and the water megamaser host galaxy NGC 4258, and find 29.10 0.06 mag. This distance is in 1 agreement with most other recent Cepheid and Tip of the Red Giant Branch distance measurements to M101. Including the previous Mira-SNIa host, NGC 1559 and SN 2005df, we determine the fiducial SN Ia peak luminosity, mag. With the Hubble diagram of SNe Ia, we derive km sMpc, a measurement of using Miras. We find excellent agreement with recent Cepheid distance ladder measurements of and confirm previous indications that the local universe value of is higher than the early-universe value at confidence. Currently, the Mira-based measurement is still dominated by the statistical uncertainty in the SN Ia peak magnitude.
22 pages, 11 figures, accepted to ApJ