English

Silicate clouds and a circumplanetary disk in the YSES-1 exoplanet system

Earth and Planetary Astrophysics 2025-07-28 v1

Abstract

Young exoplanets provide a critical link between understanding planet formation and atmospheric evolution. Direct imaging spectroscopy allows us to infer the properties of young, wide orbit, giant planets with high signal-to-noise. This allows us to compare this young population to exoplanets characterized with transmission spectroscopy, which has indirectly revealed the presence of clouds, photochemistry, and a diversity of atmospheric compositions. Direct detections have also been made for brown dwarfs, but direct studies of young giant planets in the mid-infrared were not possible prior to JWST. With two exoplanets around a solar type star, the YSES-1 system is an ideal laboratory for studying this early phase of exoplanet evolution. We report the first direct observations of silicate clouds in the atmosphere of the exoplanet YSES-1 c through its 9-11 micron absorption feature, and the first circumplanetary disk silicate emission around its sibling planet, YSES-1 b. The clouds of YSES-1 c are composed of either amorphous iron-enriched pyroxene or a combination of amorphous MgSiO3 and Mg2SiO4, with particle sizes of less than or equal to 0.1 micron at 1 millibar of pressure. We attribute the emission from the disk around YSES-1 b to be from submicron olivine dust grains, which may have formed through collisions of planet-forming bodies in the disk.

Keywords

Cite

@article{arxiv.2507.18861,
  title  = {Silicate clouds and a circumplanetary disk in the YSES-1 exoplanet system},
  author = {Kielan K. W. Hoch and Melanie Rowland and Simon Petrus and Evert Nasedkin and Carl Ingebretsen and Jens Kammerer and Marshall Perrin and Valentina D'Orazi and William O. Balmer and Travis Barman and Mickael Bonnefoy and Gael Chauvin and Christine Chen and Rob J. De Rosa and Julien Girard and Eileen Gonzales and Matt Kenworthy and Quinn M. Konopacky and Bruce Macintosh and Sarah E. Moran and Caroline V. Morley and Paulina Palma-Bifani and Laurent Pueyo and Bin Ren and Emily Rickman and Jean-Baptiste Ruffio and Christopher A. Theissen and Kim Ward-Duong and Yapeng Zhang},
  journal= {arXiv preprint arXiv:2507.18861},
  year   = {2025}
}

Comments

3 tables, 10 figures, 31 pages, Nature, Vol 643, pages 938-942, 24 July 2025

R2 v1 2026-07-01T04:18:01.636Z