For SPHERE/IRDIS RDI reductions, mixed reference libraries beat single-criterion libraries in disc S/N and consistency, while Pearson-correlation-selected libraries give the best mean contrast.
Debris disks around main-sequence stars
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
'Debris disks' are collections of small bodies around stars, such as the Asteroid Belt and Kuiper Belt in our Solar System. These disks are composed of objects smaller than planets, including asteroids, comets, dust, and dwarf planets. We detect debris disks around a significant fraction of stars, and these disks appear to be common components of planetary systems. Extrasolar debris disks have a broad range of locations, shapes and features. This chapter provides an introduction to debris disks around main-sequence stars. It summarises our understanding of the field, and covers a wide range of concepts from observations and theory. It describes how we detect extrasolar debris disks, what we see, and what these observations tell us. It also describes how debris disks evolve, and how they interact with planets. The chapter concludes by discussing several unsolved questions in debris-disk science.
fields
astro-ph.EP 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
citing papers explorer
-
Optimising reference library selection for reference-star differential imaging of discs with SPHERE/IRDIS
For SPHERE/IRDIS RDI reductions, mixed reference libraries beat single-criterion libraries in disc S/N and consistency, while Pearson-correlation-selected libraries give the best mean contrast.