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Surface Brightness Fluctuations

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arxiv 2307.03116 v2 pith:GZAC5E2W submitted 2023-07-06 astro-ph.CO

classification astro-ph.CO
keywords methodbrightnessdiscusssurfacecalibrationconstraintsdistancesgalaxies
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abstract

The Surface Brightness Fluctuation (SBF) method is a powerful tool for determining distances to early-type galaxies. The method measures the intrinsic variance in a galaxy's surface brightness distribution to determine its distance with an accuracy of about 5%. Here, we discuss the mathematical formalism behind the SBF technique, its calibration, and the practicalities of how measurements are performed. We review the various sources of uncertainties that affect the method and discuss how they can be minimized or controlled through careful observations and data analysis. The SBF technique has already been successfully applied to a large number of galaxies and used for deriving accurate constraints on the Hubble-Lema\^itre constant $H_0$. An approved JWST program will greatly reduce the systematic uncertainties by establishing a firm zero-point calibration using tip of the red giant branch (TRGB) distances. We summarize the existing results and discuss the excellent potential of the SBF method for improving the current constraints on $H_0$.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Two per cent measurement of $H_0$ from Cepheids alone

    astro-ph.CO 2025-09 conditional novelty 7.0 of 10

    A Cepheid-only distance ladder with rigorous selection modelling and BORG-based peculiar velocities yields H0 = 71.7 +/- 1.3 km/s/Mpc, in mild tension with SH0ES and in ~3 sigma tension with Planck.

  2. Tip of the Red Giant Branch Distances to NGC 1316, NGC 1380, NGC 1404, & NGC 4457: A Pilot Study of a Parallel Distance Ladder Using Type Ia Supernovae in Early-Type Host Galaxies

    astro-ph.CO 2025-08 conditional novelty 6.0 of 10

    A distance ladder using TRGB-calibrated SNe Ia only in massive, quiescent galaxies gives H0 = 75.3 ± 2.9 km/s/Mpc.

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