SIMBAD references

2021ApJS..255...21J - Astrophys. J., Suppl. Ser., 255, 21-21 (2021/August-0)

Infrared surface brightness fluctuation distances for MASSIVE and Type Ia supernova host galaxies.

JENSEN J.B., BLAKESLEE J.P., MA C.-P., MILNE P.A., BROWN P.J., CANTIELLO M., GARNAVICH P.M., GREENE J.E., LUCEY J.R., PHAN A., TULLY R.B. and WOOD C.M.

Abstract (from CDS):

We measured high-quality surface brightness fluctuation (SBF) distances for a sample of 63 massive early-type galaxies using the WFC3/IR camera on the Hubble Space Telescope. The median uncertainty on the SBF distance measurements is 0.085 mag, or 3.9% in distance. Achieving this precision at distances of 50-100 Mpc required significant improvements to the SBF calibration and data analysis procedures for WFC3/IR data. Forty-two of the galaxies are from the MASSIVE Galaxy Survey, a complete sample of massive galaxies within ∼100 Mpc; the SBF distances for these will be used to improve the estimates of the stellar and central supermassive black hole masses in these galaxies. Twenty-four of the galaxies are Type Ia supernova hosts, useful for calibrating SN Ia distances for early-type galaxies and exploring possible systematic trends in the peak luminosities. Our results demonstrate that the SBF method is a powerful and versatile technique for measuring distances to galaxies with evolved stellar populations out to 100 Mpc and constraining the local value of the Hubble constant.

Abstract Copyright: © 2021. The Author(s). Published by the American Astronomical Society.

Journal keyword(s): Galaxy distances - Distance indicators - Distance measure - Elliptical galaxies - Giant elliptical galaxies - Lenticular galaxies

Simbad objects: 67

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