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相关论文: Stellar activity consequence on the retrieved tran…

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Multiband photometric transit observations (spectro-photometric) have been used mostly so far to retrieve broadband transmission spectra of transiting exoplanets in order to study their atmospheres. An alternative method was proposed, and…

One of the most powerful methods used to estimate sky-projected spin-orbit angles of exoplanetary systems is through a spectroscopic transit observation known as the Rossiter-McLaughlin (RM) effect. So far mostly single RM observations have…

Due to stellar rotation, the observed radial velocity of a star varies during the transit of a planet across its surface, a phenomenon known as the Rossiter-McLaughlin (RM) effect. The amplitude of the RM effect is related to the radius of…

地球与行星天体物理 · 物理学 2015-06-16 Fei Yan , Robert A. E. Fosbury , Monika G. Petr-Gotzens , Enric Pallé , Gang Zhao

Transmission spectroscopy is a powerful technique for probing exoplanetary atmospheres. A successful ground-based observational method uses a differential technique based on high-dispersion spectroscopy, but that only preserves narrow…

地球与行星天体物理 · 物理学 2015-07-30 E. Di Gloria , I. A. G. Snellen , S. Albrecht

In this paper we introduce CaRM, a semi-automatic code for the retrieval of broadband transmission spectra of transiting planets through the chromatic Rossiter-McLaughlin method. We applied it to HARPS and ESPRESSO observations of two…

The characterization of exoplanetary atmospheres via transit spectroscopy is based on the comparison between the stellar spectrum filtered through the atmosphere and the unadulterated spectrum from the occulted stellar region. The…

地球与行星天体物理 · 物理学 2023-12-21 Yann Carteret , Vincent Bourrier , William Dethier

Planetary rings produce a distinct shape distortion in transit lightcurves. However, to accurately model such lightcurves the observations need to cover the entire transit, especially ingress and egress, as well as an out-of-transit…

地球与行星天体物理 · 物理学 2017-10-11 E. J. W. de Mooij , C. A. Watson , M. A. Kenworthy

We present models designed to quantify the effects of stellar activity on exoplanet transit spectroscopy and atmospheric characterization at low (R = 100) and high (R = 100,000) spectral resolution. We study three model classes mirroring…

地球与行星天体物理 · 物理学 2022-05-23 Frédéric Genest , David Lafrenière , Anne Boucher , Antoine Darveau-Bernier , René Doyon , Étienne Artigau , Neil Cook

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…

The Rossiter-McLaughlin (RM) effect is the distortion of stellar spectral lines that occurs during eclipses or transits, due to stellar rotation. We assess the future prospects for using the RM effect to measure the alignment of planetary…

天体物理学 · 物理学 2008-11-26 B. Scott Gaudi , Joshua N. Winn

When a planet transits its host star, it blocks regions of the stellar surface from view; this causes a distortion of the spectral lines and a change in the line-of-sight (LOS) velocities, known as the Rossiter-McLaughlin (RM) effect. Since…

地球与行星天体物理 · 物理学 2016-03-30 H. M. Cegla , C. Lovis , V. Bourrier , B. Beeck , C. A. Watson , F. Pepe

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…

地球与行星天体物理 · 物理学 2014-09-05 M. Oshagh , N. C. Santos , D. Ehrenreich , N. Haghighipour , P. Figueira , A. Santerne , M. Montalto

The detection of extrasolar planets' atmospheres requires very demanding observations. For planets that can not be spatially separated from their host stars, i.e. the vast majority of planets, the transiting planets are the only ones…

地球与行星天体物理 · 物理学 2015-05-13 S. Dreizler , A. Reiners , D. Homeier , M. Noll

Several studies have shown that the occultation of stellar active regions by the transiting planet can generate anomalies in the high-precision transit light curves, and these anomalies may lead to an inaccurate estimate of the planetary…

地球与行星天体物理 · 物理学 2016-08-31 M. Oshagh , S. Dreizler , N. C. Santos , P. Figueira , A. Reiners

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…

地球与行星天体物理 · 物理学 2015-06-03 P. Ballerini , G. Micela , A. F. Lanza , I. Pagano

A planetary transit produces both a photometric signal and a spectroscopic signal. Precise observations of the transit light curve reveal the planetary radius and allow a search for timing anomalies caused by satellites or additional…

天体物理学 · 物理学 2007-10-08 Joshua N. Winn

A transiting planet eclipses part of the rotating stellar surface, thereby producing an anomalous Doppler shift of the stellar spectrum. Here I review how this "Rossiter-McLaughlin Effect" can be used to characterize exoplanetary systems.…

天体物理学 · 物理学 2007-05-23 Joshua N. Winn

A transiting extrasolar planet sequentially blocks off the light coming from the different parts of the disk of the host star in a time dependent manner. Due to the spin of the star, this produces an asymmetric distortion in the line…

天体物理学 · 物理学 2009-11-10 Yasuhiro Ohta , Atsushi Taruya , Yasushi Suto

The chromatic contamination that arises from photospheric heterogeneities e.g. spots and faculae on the host star presents a significant noise source for exoplanet transmission spectra. If this contamination is not corrected for, it can…

We obtain analytical expressions for the velocity anomaly due to the Rossiter- McLaughlin effect, for the case when the anomalous radial velocity is obtained by cross-correlation with a stellar template spectrum. In the limit of vanishing…

地球与行星天体物理 · 物理学 2014-11-20 Teruyuki Hirano , Yasushi Suto , Atsushi Taruya , Norio Narita , Bun'ei Sato , John Asher Johnson , Joshua N. Winn
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