English

Lopsided Galaxies, Weak Interactions and Boosting the Star Formation Rate

Astrophysics 2009-10-31 v1

Abstract

To investigate the link between weak tidal interactions in disk galaxies and the boosting of their recent star formation, we obtain images and spatially integrated spectra (3615A < lambda < 5315A) for 40 late-type spiral galaxies (Sab-Sbc) with varying degrees of lopsidedness (a dynamical indicator of weak interactions). We quantify lopsidedness as the amplitude <A_1> of the m=1 Fourier component of the azimuthal surface brightness distribution, averaged over a range of radii. We compare the young stellar content, quantified by EW(H\delta_abs) and the strength of the 4000 Angstrom break (D_4000), with lopsidedness and find a 3-4 sigma correlation between the two. We also find a 3.2 sigma correlation between EW(H\beta_emission) and lopsidedness. Using the evolutionary population synthesis code of Bruzual & Charlot we model the spectra as an ``underlying population'' and a superimposed ``boost population'' with the aim of constraining the fractional boost in the SFR averaged over the past 0.5 Gyr (the characteristic lifetime of lopsidedness). From the difference in both EW(H\delta_abs) and D_4000 between the most and least symmetric thirds of our sample, we infer that ~ 1x10^9 M_solar of stars are formed over the duration of a lopsided event in addition to the ``underlying'' SFH (assuming a final galactic stellar mass of 10^10 M_solar). This corresponds to a factor of 8 increase in the SFR over the past 5x10^8 years. For the nuclear spectra, all of the above correlations except D_4000 vs. <A_1> are weaker than for the disk, indicating that in lopsided galaxies, the SF boost is not dominated by the nucleus.

Keywords

Cite

@article{arxiv.astro-ph/0003109,
  title  = {Lopsided Galaxies, Weak Interactions and Boosting the Star Formation Rate},
  author = {Gregory Rudnick and Hans-Walter Rix and Robert C. Kennicutt},
  journal= {arXiv preprint arXiv:astro-ph/0003109},
  year   = {2009}
}

Comments

35 pages, including 10 figures, to appear in the Astrophysical Journal, abridged abstract

R2 v1 2026-07-22T07:45:05.329Z