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Transmission spectra probe exoplanetary atmospheres, but they can also be strongly affected by heterogeneities in host star photospheres through the transit light source effect. Here we build upon our recent study of the effects of…

Earth and Planetary Astrophysics · Physics 2019-02-13 Benjamin V. Rackham , Dániel Apai , Mark S. Giampapa

The TRAPPIST-1 planetary system represents an exceptional opportunity for the atmospheric characterization of temperate terrestrial exoplanets with the upcoming James Webb Space Telescope (JWST). Assessing the potential impact of stellar…

Stellar surface heterogeneities, such as spots and faculae, often contaminate exoplanet transit spectra, hindering precise atmospheric characterization. We demonstrate a novel, epoch-based, model-independent method to mitigate stellar…

The seven approximately Earth-sized transiting planets in the \object{TRAPPIST-1} system provide a unique opportunity to explore habitable zone and non-habitable zone small planets within the same system. Its habitable zone exoplanets --…

Earth and Planetary Astrophysics · Physics 2018-10-17 Zhanbo Zhang , Yifan Zhou , Benjamin V. Rackham , Daniel Apai

The impact of unocculted stellar surface heterogeneities in the form of cool spots and hot faculae on the spectrum of a transiting planet has been a daunting problem for the characterization of exoplanet atmospheres. The…

Earth and Planetary Astrophysics · Physics 2020-02-12 Aishwarya R. Iyer , Michael R. Line

Detailed atmospheric characterization of exoplanets by transmission spectroscopy requires careful consideration of stellar surface inhomogeneities induced by starspots. This effect is particularly problematic for planetary systems around…

Exoplanet host star activity, in the form of unocculted star spots or faculae, alters the observed transmission and emission spectra of the exoplanet. This effect can be exacerbated when combining data from different epochs if the stellar…

We re-visit the principles of transmission spectroscopy for transiting extrasolar planets, focusing on the overlap between the planetary spectrum and the illuminating stellar spectrum. Virtually all current models of exoplanetary…

Earth and Planetary Astrophysics · Physics 2017-05-24 Drake Deming , Kyle Sheppard

The occurrence of a planet transiting in front of its host star offers the opportunity to observe the planet's atmosphere filtering starlight. The fraction of occulted stellar flux is roughly proportional to the optically thick area of the…

Earth and Planetary Astrophysics · Physics 2021-04-20 G. Morello , T. Zingales , M. Martin-Lagarde , R. Gastaud , P. -O. Lagage

Stellar magnetic activity is a source of noise in the study of the transits of extrasolar planets. It induces flux variations which affect significantly the transit depth determination and the derivations of planetary and stellar…

Earth and Planetary Astrophysics · Physics 2015-06-03 P. Ballerini , G. Micela , A. F. Lanza , I. Pagano

Transmission spectroscopy during planetary transits is expected to be a major source of information on the atmospheres of small (approximately Earth-sized) exoplanets in the next two decades. This technique, however, is intrinsically…

Stellar photospheric heterogeneities (e.g., starspots, faculae) distort the stellar spectrum in transit and imprint wavelength-dependent biases on the planet-to-star radius ratio (Transit Light Source Effect, TLSE). The Rackham-TLSE…

Earth and Planetary Astrophysics · Physics 2026-02-18 Viktor Y. D. Sumida , Raissa Estrela , Mark Swain , Adriana Valio

Transmission spectroscopy probes exoplanet atmospheres via the wavelength dependence of transit depths, but stellar contamination from magnetic activity can significantly bias these measurements. Activity-induced changes in the chromatic…

Earth and Planetary Astrophysics · Physics 2026-01-14 Nina-Elisabeth Nèmec , Òscar Porqueras- Léon , Ignasi Ribas , Alexander I. Shapiro

The TRAPPIST-1 planetary system is a favorable target for the atmospheric characterization of temperate earth-sized exoplanets by means of transmission spectroscopy with the forthcoming James Webb Space Telescope (JWST). A possible obstacle…

Transmission spectroscopy is still the preferred characterization technique for exoplanet atmospheres, although it presents unique challenges that translate into characterization bottlenecks when robust mitigation strategies are missing.…

Earth and Planetary Astrophysics · Physics 2024-07-24 Benjamin V. Rackham , Julien de Wit

Transmission spectroscopy during planetary transits, which is based on the measurements of the variations of planet-to-star radius ratio as a function of wavelength, is a powerful technique to study the atmospheric properties of transiting…

Earth and Planetary Astrophysics · Physics 2014-09-05 M. Oshagh , N. C. Santos , D. Ehrenreich , N. Haghighipour , P. Figueira , A. Santerne , M. Montalto

We quantify the effects of refraction in transit transmission spectroscopy on spectral absorption features and on temporal variations that could be used to obtain altitude-dependent spectra for planets orbiting stars of different stellar…

Earth and Planetary Astrophysics · Physics 2014-08-19 Amit Misra , Victoria Meadows , Dave Crisp

Context: Transmission spectroscopy is a powerful tool for understanding exoplanet atmospheres. At optical wavelengths, it makes it possible to infer the composition and the presence of aerosols in the atmosphere. However, unocculted stellar…

Recently, Currie et al. simulated the detection of molecules in the atmospheres of temperate rocky exoplanets transiting nearby M-dwarf stars. They simulated detections via spectral cross-correlation applied to high resolution optical and…

Earth and Planetary Astrophysics · Physics 2025-05-08 Drake Deming , Miles H. Currie , Victoria S. Meadows , Sarah Peacock

Transmission spectroscopy is currently the technique best suited to study a wide range of planetary atmospheres, leveraging the filtering of a star's light by a planet's atmosphere rather than its own emission. However, as both a planet and…

Earth and Planetary Astrophysics · Physics 2024-01-08 David Berardo , Julien de Wit , Benjamin V. Rackham
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