Why heterogeneous cloud particles matter: Iron-bearing species and cloud particle morphology affects exoplanet transmission spectra
arXiv:2409.01121 · doi:10.1051/0004-6361/202450526
Abstract
The possibility of observing spectral features in exoplanet atmospheres with space missions like JWST and ARIEL necessitates the accurate modelling of cloud particle opacities. In exoplanet atmospheres, cloud particles can be made from multiple materials and be considerably chemically heterogeneous. Therefore, assumptions on the morphology of cloud particles are required to calculate their opacities. The aim of this work is to analyse how different approaches to calculate the opacities of heterogeneous cloud particles affect cloud particle optical properties. We calculate cloud particle optical properties using seven different mixing treatments: four effective medium theories (EMTs: Bruggeman, Landau-Lifshitz-Looyenga (LLL), Maxwell-Garnett, and Linear), core-shell, and two homogeneous cloud particle approximations. We study the mixing behaviour of 21 commonly considered cloud particle materials for exoplanets. To analyse the impact on observations, we study the transmission spectra of HATS-6b, WASP-39b, WASP-76b, and WASP-107b.Materials with large refractive indices, like iron-bearing species or carbon, can change the optical properties of cloud particles when they comprise less than 1\% of the total particle volume. The mixing treatment of heterogeneous cloud particles also has an observable effect on transmission spectroscopy. Assuming core-shell or homogeneous cloud particles results in less muting of molecular features and retains the cloud spectral features of the individual cloud particle materials. The predicted transit depth for core-shell and homogeneous cloud particle materials are similar for all planets used in this work. If EMTs are used, cloud spectral features are broader and cloud spectral features of the individual cloud particle materials are not retained. Using LLL leads to less molecular features in transmission spectra compared to Bruggeman.
21 pages, 15 figures, Accepted by A&A
References in corpus (29)
- petitRADTRANS: a Python radiative transfer package for exoplanet characterization and retrieval
- ExoMol molecular line lists XXXV: a rotation-vibration line list for hot ammonia
- ExoMol molecular line lists - XVI: The rotation-vibration spectrum of hot HS
- Transmission spectral properties of clouds for hot Jupiter exoplanets
- Retrieving the Aerosol Complex Refractive Index using PyMieScatt: A Mie Computational Package with Visualization Capabilities
- ExoMol line lists -- XXXIX. Ro-vibrational molecular line list for CO
- Retrieving scattering clouds and disequilibrium chemistry in the atmosphere of HR 8799e
- ExoMol line lists VII: The rotation-vibration spectrum of phosphine up to 1500 K
- Dust in Brown Dwarfs and Extra-solar Planets I. Chemical composition and spectral appearance of quasi-static cloud layers
- A hybrid line list for CH and hot methane continuum
- A reflective, metal-rich atmosphere for GJ 1214b from its JWST phase curve
- ExoMol molecular line lists V: The ro-vibrational spectra of NaCl and KCl
- HATS-6b: A Warm Saturn Transiting an Early M Dwarf Star, and a Set of Empirical Relations for Characterizing K and M Dwarf Planet Hosts
- ExoMol molecular line lists -- XXXVII: spectra of acetylene
- Effective medium theories for irregular fluffy structures: aggregation of small particles
- Transit Signatures of Inhomogeneous Clouds on Hot Jupiters: Insights From Microphysical Cloud Modeling
- The ARCiS framework for Exoplanet Atmospheres: Modelling Philosophy and Retrieval
- Vanadium oxide and a sharp onset of cold-trapping on a giant exoplanet
- Atmospheric circulation of brown dwarfs and directly imaged exoplanets driven by cloud radiative feedback: global and equatorial dynamics
- Sparkling nights and very hot days on WASP-18b: the formation of clouds and the emergence of an ionosphere
- Retrieval survey of metals in six ultra-hot Jupiters: Trends in chemistry, rain-out, ionisation and atmospheric dynamics
- Dust in Brown Dwarfs IV. Dust formation and driven turbulence on mesoscopic scales
- A Universal Cloud Composition on the Nightsides of Hot Jupiters
- Mineral snowflakes on exoplanets and brown dwarfs: Effects of micro-porosity, size distributions, and particle shape
- The Impact of Phase Equilibrium Cloud Models on GCM Simulations of GJ~1214b
- No evidence for radius inflation in hot Jupiters from vertical advection of heat
- Transmission spectroscopy with VLT FORS2: a featureless spectrum for the low-density transiting exoplanet WASP-88b
- Revisiting fundamental properties of TiO nanoclusters as condensation seeds in astrophysical environments
- The effect of thermal non-equilibrium on kinetic nucleation
Cited by in corpus (6)
- Evidence for SiO cloud nucleation in the rogue planet PSO J318
- A Panchromatic Characterization of the Evening and Morning Atmosphere of WASP-107 b: Composition and Cloud Variations, and Insight into the Effect of Stellar Contamination
- ExoLyn: a golden mean approach to multi-species cloud modelling in atmospheric retrieval
- Cloud and Haze Parameterization in Atmospheric Retrievals: Insights from Titan's Cassini Data and JWST Observations of Hot Jupiters
- Silicate Sundogs: Probing the Effects of Grain Directionality in Exoplanet Observations
- Pre-computed aerosol extinction, scattering and asymmetry grids for scalable atmospheric retrievals