UV Exoplanet Transmission Spectral Features as Probes of Metals and Rainout
arXiv:2005.02528 · doi:10.3847/2041-8213/aba265
Abstract
The low-resolution transmission spectra of ultra-hot Jupiters observed shortward of 0.5 microns indicate strong absorption at short-wavelengths. Previous explanations have included scattering, photochemistry, escaping metals, and disequilibrium chemistry. In this Letter, we show that slopes and features shortward of 0.5 microns can be caused by opacity not commonly considered in atmosphere models of exoplanets but guaranteed to be present if conditions are near chemical equilibrium including Fe I, Fe II, Ti I, Ni I, Ca I, Ca II, and SiO. Even relatively trace species (e.g., Cr I and Mn I) can contribute through strong lines in the UV and blue-optical. Using the PHOENIX atmosphere model, we describe how the short-wavelength transit spectrum varies with equilibrium temperature between 1000 K and 4000 K, as well as the effect that the rainout of condensates has at these wavelengths. We define two spectral indices to quantify the strength of the NUV and blue absorption compared to that in the red-optical, finding that the NUV transit depth will significantly exceed the transit depth from Rayleigh scattering alone for all hot Jupiters down to around 1000 K. In the blue-optical, hot Jupiters warmer than 2000 K will have transit depths larger than that from Rayleigh scattering, but below 2000 K, Rayleigh scattering can dominate, if present. We further show that these spectral indices may be used to trace the effects of rainout. We then compare our simulated transit spectra to existing observations of WASP-12b, WASP-33b, WASP-76b, and WASP-121b.
9 pages, 5 figures. Submitted to ApJL
References in corpus (21)
- The NumPy array: a structure for efficient numerical computation
- Detection of atmospheric haze on an extrasolar planet: The 0.55 - 1.05 micron transmission spectrum of HD189733b with the Hubble Space Telescope
- Rayleigh scattering in the transit spectrum of HD 189733b
- Water Vapor in the Spectrum of the Extrasolar Planet HD 189733b: 1. the Transit
- Nightside condensation of iron in an ultra-hot giant exoplanet
- Atmospheric Sulfur Photochemistry on Hot Jupiters
- An ultrahot gas-giant exoplanet with a stratosphere
- A spectral survey of an ultra-hot Jupiter: Detection of metals in the transmission spectrum of KELT-9 b
- Near-UV Absorption, Chromospheric Activity, and Star-Planet Interactions in the WASP-12 system
- Detection of Fe I in the atmosphere of the ultra-hot Jupiter WASP-121b, and a new likelihood-based approach for Doppler-resolved spectroscopy
- HST/STIS Optical Transit Transmission Spectra of the hot-Jupiter HD209458b
- Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS) - II. A broadened sodium feature on the ultra-hot giant WASP-76b
- Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS) III. Atmospheric structure of the misaligned ultra-hot Jupiter WASP-121b
- Detection of neutral atomic species in the ultra-hot jupiter WASP-121b
- New Avenues for Thermal Inversions in hot Jupiters
- An emission spectrum for WASP-121b measured across the 0.8-1.1 micron wavelength range using the Hubble Space Telescope
- The Influence of Host Star Spectral Type on Ultra-Hot Jupiter Atmospheres
- Neutral Cr and V in the atmosphere of ultra hot jupiter WASP-121 b
- Near-ultraviolet Transmission Spectroscopy of HD 209458b: Evidence of Ionized Iron Beyond the Planetary Roche Lobe
- Into the UV: A precise transmission spectrum of HAT-P-41b using Hubble's WFC3/UVIS G280 grism
- Swift UVOT near-UV transit observations of WASP-121 b
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- Aerosols in Exoplanet Atmospheres
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- A New Window into Planet Formation and Migration: Refractory-to-Volatile Elemental Ratios in Ultra-hot Jupiters
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- Breaking Degeneracies in Formation Histories by Measuring Refractory Content in Gas Giants
- TRIDENT: A Rapid 3D Radiative Transfer Model for Exoplanet Transmission Spectra
- ExoMol line lists -- XLIV. IR and UV line list for silicon monoxide (SiO)
- An inventory of atomic species in the atmosphere of WASP-121b using UVES high-resolution spectroscopy
- The Hubble PanCET program: Transit and Eclipse Spectroscopy of the Strongly Irradiated Giant Exoplanet WASP-76b
- Gemini/GMOS Optical Transmission Spectroscopy of WASP-121b: signs of variability in an ultra-hot Jupiter?
- Impact of photochemical hazes and gases on exoplanet atmospheric thermal structure
- CRIRES+ and ESPRESSO reveal an atmosphere enriched in volatiles relative to refractories on the ultra-hot Jupiter WASP-121b
- The Mantis Network II: Examining the 3D high-resolution observable properties of the UHJs WASP-121b and WASP-189b through GCM modelling
- The Colorado Ultraviolet Transit Experiment (CUTE) Mission Overview
- Aiolos- A multi-purpose 1-D hydrodynamics code for planetary atmospheres
- An enhanced slope in the transmission spectrum of the hot Jupiter WASP-104b
- Atmosphere Models of Brown Dwarfs Irradiated by White Dwarfs: Analogues for Hot and Ultra-Hot Jupiters
- A large range of haziness conditions in hot-Jupiter atmospheres
- WASP-121b's transmission spectrum observed with JWST/NIRSpec G395H reveals thermal dissociation and SiO in the atmosphere
- Why is it So Hot in Here? Exploring Population Trends in Thermal Emission Observations of Hot Jupiters using Planet-Specific Self-Consistent Atmospheric Models
- Evidence of Radius Inflation in Radiative GCM Models of WASP-76b due to the Advection of Potential Temperature
- The Hubble PanCET program: The near-ultraviolet transmission spectrum of WASP-79b
- Strong NUV Refractory Absorption and Dissociated Water in the Hubble Transmission Spectrum of the Ultra Hot Jupiter KELT-20 b
- TRAPPIST-1h as an Exo-Titan. I. The Role of Assumptions about Atmospheric Parameters in Understanding an Exoplanet Atmosphere
- Five new hot-Jupiter transits investigated with Swift-UVOT
- The Hubble PanCET program: Emission spectrum of hot Jupiter HAT-P-41b
- A Comprehensive Analysis of the Panchromatic Transmission Spectrum of the Hot-Saturn WASP-96 b: Nondetection of Haze, Possible Sodium Limb Asymmetry, Stellar Characterization, and Formation History
- The near-UV transit of HD 189733b with the XMM-Newton Optical Monitor
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- Spitzer phase curve observations and circulation models of the inflated ultra-hot Jupiter WASP-76b
- Interpreting the atmospheric composition of exoplanets: sensitivity to planet formation assumptions
- Patchy nightside clouds on ultra-hot Jupiters: General Circulation Model simulations with radiatively active cloud tracers
- MAUVE: An Ultraviolet Astrophysics Probe Mission Concept
- The breaking of cold traps and onset of titanium in ultra-hot Jupiter atmospheres: WASP-189b in context
- Investigation of the upper atmosphere in ultra-hot Jupiter WASP-76 b with high-resolution spectroscopy
- TOI-1518b: A Misaligned Ultra-hot Jupiter with Iron in its Atmosphere