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Surface photometry of bulge dominated low surface brightness galaxies

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arxiv astro-ph/9909483 v1 pith:K2JXDWFA submitted 1999-09-29 astro-ph

classification astro-ph
keywords galaxiesdominatedbulgedisksurfacebrightnessscaleband
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We present results of broad band {BVRI} observations of a sample of galaxies with a low surface brightness (LSB) disk and a bulge. These galaxies are well described as exponential disks and exponential bulges with no preferred value for either scale length or central surface brightness. The median {B} band disk scale length is 12.6 kpc (H_(0) = 75 km s^{-1} Mpc^{-1}) which is much larger than scale lengths of typical (disk dominated) LSB or high surface brightness (HSB) galaxies. Furthermore, the disk and bulge scale lengths are correlated, suggesting a coupling in the formation. Bulge dominated LSB galaxies are observed to be redder than disk dominated LSB galaxies and their bulge-to-disk ratios are increasing towards redder wavelengths. We find colors that are comparable to or bluer than HSB galaxies of the same morphological types. Bulge dominated LSB galaxies are therefore not faded HSB galaxies with no current star formation. We find that bulge dominated LSB galaxies fit in with the general trends defined by the HSB galaxies. The properties of these bulge dominated LSB galaxies show that LSB galaxies do not just come in two varieties. They cover the entire range in optical and morphological properties between late-type disk dominated LSBs and giant Malin-1-like LSBs. LSB galaxies thus also form a LSB Hubble sequence, parallel to the classical HSB one.

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Cited by 1 Pith paper

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

  1. The Merger-Driven Formation of Classical Low Surface Brightness Galaxies in Romulus25

    astro-ph.GA 2025-07 conditional novelty 6.0 of 10

    In the Romulus25 simulation, classical low surface brightness galaxies form mainly through major mergers with aligned, co-rotating orbits that spin up and puff out the remnant galaxy.

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