K2 and Spitzer phase curves of the rocky ultra-short-period planet K2-141 b hint at a tenuous rock vapor atmosphere
arXiv:2203.00370 · doi:10.1051/0004-6361/202142912
Abstract
K2-141 b is a transiting, small (1.5 Re) ultra-short-period (USP) planet discovered by Kepler orbiting a K-dwarf host star every 6.7 hours. The planet's high surface temperature makes it an excellent target for thermal emission observations. Here we present 65 hours of continuous photometric observations of K2-141 b collected with Spitzer's IRAC Channel 2 at 4.5 micron spanning 10 full orbits of the planet. We measure an infrared eclipse depth of 143 +/- 39 ppm and a peak to trough amplitude variation of 121 +/- 43 ppm. The best fit model to the Spitzer data shows no significant thermal hotspot offset, in contrast to the previously observed offset for the well-studied USP planet 55 Cnc e. We also jointly analyze the new Spitzer observations with the photometry collected by Kepler during two separate K2 campaigns. We model the planetary emission with a range of toy models that include a reflective and a thermal contribution. With a two-temperature model, we measure a dayside temperature of 2049 +/- 361 K and a night-side temperature that is consistent with zero (Tp,n < 1712 K at 2 sigma). Models with a steep dayside temperature gradient provide a better fit to the data than a uniform dayside temperature (DeltaBIC = 22.2). We also find evidence for a non-zero geometric albedo Ag = 0.28 +/- 0.07. We also compare the data to a physically motivated, pseudo-2D rock vapor model and a 1D turbulent boundary layer model. Both models fit the data well. Notably, we find that the optical eclipse depth can be explained by thermal emission from a hot inversion layer, rather than reflected light. A thermal inversion may also be responsible for the deep optical eclipse observed for another USP, Kepler-10 b. Finally, we significantly improve the ephemerides for K2-141 b and c, which will facilitate further follow-up observations of this interesting system with state-of-the-art observatories like JWST.
31 pages, 27 figures, 12 tables, accepted for publication in A&A
References in corpus (39)
- Array Programming with NumPy
- The K2 Mission: Characterization and Early results
- Detection of Thermal Emission from an Extrasolar Planet
- A Technique for Extracting Highly Precise Photometry for the Two-Wheeled Kepler Mission
- Growth Model Interpretation of Planet Size Distribution
- petitRADTRANS: a Python radiative transfer package for exoplanet characterization and retrieval
- The effect of red noise on planetary transit detection
- KEPLER's First Rocky Planet: Kepler-10b
- Radial velocity planets de-aliased. A new, short period for Super-Earth 55 Cnc e
- The Transit Light Curve Project. IX. Evidence for a Smaller Radius of the Exoplanet XO-3b
- Five Planets Orbiting 55 Cancri
- A Study of the Shortest-Period Planets Found With Kepler
- Long Term Evolution of Close Planets Including the Effects of Secular Interactions
- The Kepler-10 planetary system revisited by HARPS-N: A hot rocky world and a solid Neptune-mass planet
- Self-luminous and irradiated exoplanetary atmospheres explored with HELIOS
- ExoMol molecular line lists V: The ro-vibrational spectra of NaCl and KCl
- A global analysis of Spitzer and new HARPS data confirms the loneliness and metal-richness of GJ 436 b
- K-H_2 Quasi-molecular absorption detected in the T-dwarf epsilon Indi Ba
- Theoretical Emission Spectra of Atmospheres of Hot Rocky Super-Earths
- The Transit Light Curve Project. VII. The Not-So-Bloated Exoplanet HAT-P-1b
- A Semi-Analytical Model of Visible-Wavelength Phase Curves of Exoplanets and Applications to Kepler-7 b and Kepler-10 b
- A new class of Super-Earths formed from high-temperature condensates: HD219134 b, 55 Cnc e, WASP-47 e
- Prospects for Characterizing the Atmosphere of Proxima Centauri b
- Linking the Climate and Thermal Phase Curve of 55 Cancri e
- A Case for an Atmosphere on Super-Earth 55 Cancri e
- Precise Masses in the WASP-47 System
- Observability of Evaporating Lava Worlds
- CHEOPS Precision Phase Curve of the Super-Earth 55 Cnc e
- Jupiter's Phase Variations from Cassini: a testbed for future direct-imaging missions
- The Albedos of Kepler's Close-in super-Earths
- Modelling the atmosphere of lava planet K2-141b: implications for low and high resolution spectroscopy
- Introducing a New Spitzer Master BLISS Map to Remove the Instrument-Systematic -- Phase-Curve-Parameter Degeneracy, as Demonstrated by a Reanalysis of the 4.5 WASP-43b Phase Curve
- Low Albedo Surfaces of Lava Worlds
- Statistical Eclipses of Close-in Kepler Sub-Saturns
- Multi-season optical modulation phased with the orbit of the super-Earth 55 Cnc e
- Temperature inversions on hot super-Earths: the case of CN in nitrogen-rich atmospheres
- Probing Kepler's hottest small planets via homogeneous search and analysis of optical secondary eclipses and phase variations
- Exploring Super-Earth Surfaces: Albedo of Near-Airless Magma Ocean Planets and Topography
- Identification and Mitigation of a Vibrational Telescope Systematic with Application to Spitzer
Cited by in corpus (35)
- A secondary atmosphere on the rocky exoplanet 55 Cancri e
- FastChem 2: An improved computer program to determine the gas-phase chemical equilibrium composition for arbitrary element distributions
- GJ 1252b: A Hot Terrestrial Super-Earth With No Atmosphere
- Hints of a sulfur-rich atmosphere around the 1.6 R Super-Earth L98-59 d from JWST NIRSpec G395H transmission spectroscopy
- Super-Earths and Earth-like Exoplanets
- JWST reveals a rapid and strong day side variability of 55 Cancri e
- Hot Rocks Survey I : A possible shallow eclipse for LHS 1478 b
- Revisiting the Iconic Spitzer Phase Curve of 55 Cancri e: Hotter Dayside, Cooler Nightside and Smaller Phase Offset
- Interior dynamics of super-Earth 55 Cancri e
- Observability of silicates in volatile atmospheres of super-Earths and sub-Neptunes
- The effect of a small amount of hydrogen in the atmosphere of ultrahot magma-ocean planets: atmospheric composition and escape
- Investigating the visible phase-curve variability of 55 Cnc e
- 55 Cancri e's occultation captured with CHEOPS
- A Lack of Variability Between Repeated Spitzer Phase Curves of WASP-43b
- Dynamics and Clouds in Planetary Atmospheres from Telescopic Observations
- LavAtmos: An open source chemical equilibrium vaporisation code for lava worlds
- The Cosmic Shoreline Revisited: A Metric for Atmospheric Retention Informed by Hydrodynamic Escape
- Locked In Ice: how Pebble Drift and Volatile Entrapment can Significantly Impact Carbon and Oxygen Ratios in Evolving Protoplanetary Discs
- Interior-atmosphere modelling to assess the observability of rocky planets with JWST
- A Reanalysis of the Composition of K2-106b: an Ultra-short Period Super-Mercury Candidate
- Constraining exoplanet interiors using observations of their atmospheres
- TOI-1442 b and TOI-2445 b: two potentially rocky ultra-short period planets around M dwarfs
- CHEOPS and TESS view of the ultra-short period super-Earth TOI-561 b
- A general machine learning model of aluminosilicate melt viscosity and its application to the surface properties of dry lava planets
- Direct detectability of tidally heated exomoons by photometric orbital modulation
- Low 4.5 μm Dayside Emission Disfavors a Dark Bare-Rock scenario for the Hot Super-Earth TOI-431 b
- Is the hot, dense sub-Neptune TOI-824b an exposed Neptune mantle? Spitzer detection of the hot day side and reanalysis of the interior composition
- Clouds in partial atmospheres of lava planets and where to find them
- LavAtmos 2.0: Incorporating Volatiles Species in Vaporization Models
- Surface pressure impact on nitrogen-dominated USP super-Earth atmospheres
- Evidence for an Atmosphere on the Ultra-Short Period super-Earth HD 3167 b
- Influence of Planetary Rotation on Supersonic Flow of Lava Planets: A Two-Dimensional Horizontal Model Analysis
- Sensitivity of Dry Lava Planet Atmospheric Emission Spectra to Changes in Lava Compositions
- An Evolving Cosmic Shoreline and Sandbar Bounding the Rocky Airless Valley
- Deep two-phase, hemispherical magma oceans on lava planets