International audienceContext. The detection of reflected light from an exoplanet is a difficult technical challenge at optical wavelengths. Even though this signal is expected to replicate the stellar signal, not only is it several orders of magnitude fainter, but it is also hidden among the stellar noise. Aims. We apply a variant of the cross-correlation technique to HARPS observations of 51 Peg to detect the reflected signal from planet 51 Peg b. Methods. Our method makes use of the cross-correlation function (CCF) of a binary mask with high-resolution spectra to amplify the minute planetary signal that is present in the spectra by a factor proportional to the number of spectral lines when performing the cross correlation. The resulting ...
Context. It is challenging to measure the starlight reflected from exoplanets because of the extreme...
At optical wavelengths, an exoplanet’s signature is essentially reflected light from the host star- ...
© 2015, Pleiades Publishing, Ltd. The goal of the present study is the development and testing of a ...
International audienceContext. The detection of reflected light from an exoplanet is a difficult tec...
Context. The detection of reflected light from an exoplanet is a difficult technical challenge at op...
International audienceContext. The extreme contrast ratios between stars and their planets at optica...
International audienceContext. The analysis of exoplanetary atmospheres by means of high-resolution ...
Context. The analysis of exoplanetary atmospheres by means of high-resolution spectroscopy is an exp...
Context. The analysis of exoplanetary atmospheres by means of high-resolution spectroscopy is an exp...
Aims. We attempt to detect starlight reflected from the hot Jupiter orbiting the main-sequence star ...
In this paper, we present ground-based high-resolution spectroscopy of 51 Pegasi using CRIRES at the...
Aims. In this paper we explore the possibility that the recently detected reflected light signal of ...
Context. It is challenging to measure the starlight reflected from exoplanets because of the extreme...
At optical wavelengths, an exoplanet’s signature is essentially reflected light from the host star- ...
© 2015, Pleiades Publishing, Ltd. The goal of the present study is the development and testing of a ...
International audienceContext. The detection of reflected light from an exoplanet is a difficult tec...
Context. The detection of reflected light from an exoplanet is a difficult technical challenge at op...
International audienceContext. The extreme contrast ratios between stars and their planets at optica...
International audienceContext. The analysis of exoplanetary atmospheres by means of high-resolution ...
Context. The analysis of exoplanetary atmospheres by means of high-resolution spectroscopy is an exp...
Context. The analysis of exoplanetary atmospheres by means of high-resolution spectroscopy is an exp...
Aims. We attempt to detect starlight reflected from the hot Jupiter orbiting the main-sequence star ...
In this paper, we present ground-based high-resolution spectroscopy of 51 Pegasi using CRIRES at the...
Aims. In this paper we explore the possibility that the recently detected reflected light signal of ...
Context. It is challenging to measure the starlight reflected from exoplanets because of the extreme...
At optical wavelengths, an exoplanet’s signature is essentially reflected light from the host star- ...
© 2015, Pleiades Publishing, Ltd. The goal of the present study is the development and testing of a ...