English

Environmental effects on nearby debris discs

Earth and Planetary Astrophysics 2025-02-07 v1 Astrophysics of Galaxies Solar and Stellar Astrophysics

Abstract

We probe the effect of the ISM on debris disc occurrence rates and on the morphologies of the discs. We used results from the Herschel Space Observatory DUNES and DEBRIS surveys of 295 nearby FGK dwarf stars imaged at 100 μ\mum and 160 μ\mum. Most of the 48 debris discs in this sample have small optical depths, making them more likely to be affected by the ISM compared to optically thick discs. Since the stars in our sample are located within the Local Interstellar Cloud, we can infer that their debris discs encounter similar conditions. This allows us to use the stellar space velocity as a single indicator of the forces that can act on the debris disc dust grains when they interact with the ISM. The observed debris disc occurrence rates seem to depend on the stellar space velocities, as expected under the hypothesis that stars with higher space velocities have a higher probability of losing their circumstellar dust. The percentage of sources with debris discs in our sample reaches a maximum of \approx25% for stars with low space velocity component values, Urel|U_{\mathrm{rel}}|, relative to the local ISM, and decreases for larger Urel|U_{\mathrm{rel}}| values down to the 10% level. A decrease in the average disc fractional luminosity as a function of Urel|U_{\mathrm{rel}}| is also observed. These dependences do not disappear after accounting for the reported higher dispersion of UU values with age. In extended discs, the impact of the ISM could also explain the links observed between the stellar space velocities and the debris disc projected ellipticities, position angles, and radii. Although these indications may not be fully conclusive on their own, they collectively reinforce the hypothesis that the ISM influences the occurrence rates and morphologies of debris discs.

Keywords

Cite

@article{arxiv.2502.03584,
  title  = {Environmental effects on nearby debris discs},
  author = {A. M. Heras and C. Eiroa and C. del Burgo and J. P. Marshall and B. Montesinos},
  journal= {arXiv preprint arXiv:2502.03584},
  year   = {2025}
}

Comments

13 pages, 13 figures. Accepted for publication in A&A on 6 January 2025

R2 v1 2026-06-28T21:34:02.839Z