A comprehensive study on radial velocity signals using ESPRESSO: Pushing precision to the 10 cm/s level

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Main Authors: Figueira, P., Faria, J. P., Silva, A. M., Castro-González, A., da Silva, J. Gomes, Sousa, S. G., Bossini, D., Zapatero-Osorio, M. R., Balsalobre-Ruza, O., Lillo-Box, J., Tabernero, H. M., Adibekyan, V., Allart, R., Benatti, S., Bouchy, F., Cabral, A., Cristiani, S., Dumusque, X., González-Hernández, J. I., Hara, N., Curto, G. Lo, Lovis, C., Mehner, A., Molaro, P., Pepe, F., Santos, N. C., Ségransan, D., Sosnowska, D., Rebolo, R., Mascareño, A. Suárez, Sozzetti, A., Udry, S., Wehbe, B.
Format: Preprint
Published: 2025
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author Figueira, P.
Faria, J. P.
Silva, A. M.
Castro-González, A.
da Silva, J. Gomes
Sousa, S. G.
Bossini, D.
Zapatero-Osorio, M. R.
Balsalobre-Ruza, O.
Lillo-Box, J.
Tabernero, H. M.
Adibekyan, V.
Allart, R.
Benatti, S.
Bouchy, F.
Cabral, A.
Cristiani, S.
Dumusque, X.
González-Hernández, J. I.
Hara, N.
Curto, G. Lo
Lovis, C.
Mehner, A.
Molaro, P.
Pepe, F.
Santos, N. C.
Ségransan, D.
Sosnowska, D.
Rebolo, R.
Mascareño, A. Suárez
Sozzetti, A.
Udry, S.
Wehbe, B.
author_facet Figueira, P.
Faria, J. P.
Silva, A. M.
Castro-González, A.
da Silva, J. Gomes
Sousa, S. G.
Bossini, D.
Zapatero-Osorio, M. R.
Balsalobre-Ruza, O.
Lillo-Box, J.
Tabernero, H. M.
Adibekyan, V.
Allart, R.
Benatti, S.
Bouchy, F.
Cabral, A.
Cristiani, S.
Dumusque, X.
González-Hernández, J. I.
Hara, N.
Curto, G. Lo
Lovis, C.
Mehner, A.
Molaro, P.
Pepe, F.
Santos, N. C.
Ségransan, D.
Sosnowska, D.
Rebolo, R.
Mascareño, A. Suárez
Sozzetti, A.
Udry, S.
Wehbe, B.
contents We analyse ESPRESSO data for the stars HD10700, HD20794, HD102365, and HD304636 acquired via its Guaranteed Time Observations (GTO) programme. We characterise the stars' radial velocity (RV) signals down to a precision of 10 cm/s on timescales ranging from minutes to planetary periods falling within the host's habitable zone (HZ). We study the RV signature of pulsation, granulation, and stellar activity, inferring the potential presence of planets around these stars. Thus, we outline the population of planets that while undetectable remain compatible with the available data. A simple model of stellar pulsations successfully reproduced the intra-night RV scatter of HD10700 down to a few cm/s. For HD102365 and HD20794, an additional source of scatter at the level of several 10 cm/s remains necessary to explain the data. A kima analysis was used to evaluate the number of planets supported by the nightly averaged time series of each of HD10700, HD102365, and HD304636, under the assumption that a quasi-periodic Gaussian process (GP) regression is able to model the activity signal. While a frequency analysis of HD10700 RVs is able to identify a periodic signal at 20d, when it is modelled along with the activity signal the signal is formally non-significant. ESPRESSO data on their own do not provide conclusive evidence for the existence of planets around these three stars. ESPRESSO is shown to reach an on-sky RV precision of better than 10 cm/s on short timescales (<1h) and of 40 cm/s over 3.5 yr. A subdivision of the datasets showcases a precision reaching 20-30 cm/s over one year. These results impose stringent constraints on the impact of granulation mechanisms on RV. In spite of no detections, our analysis of HD10700 RVs demonstrates a sensitivity to planets with a mass of 1.7M$_{\oplus}$ for periods of up to 100 d, and a mass of 2-5M$_{\oplus}$ for the star's HZ. (abridged)
format Preprint
id arxiv_https___arxiv_org_abs_2507_07514
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A comprehensive study on radial velocity signals using ESPRESSO: Pushing precision to the 10 cm/s level
Figueira, P.
Faria, J. P.
Silva, A. M.
Castro-González, A.
da Silva, J. Gomes
Sousa, S. G.
Bossini, D.
Zapatero-Osorio, M. R.
Balsalobre-Ruza, O.
Lillo-Box, J.
Tabernero, H. M.
Adibekyan, V.
Allart, R.
Benatti, S.
Bouchy, F.
Cabral, A.
Cristiani, S.
Dumusque, X.
González-Hernández, J. I.
Hara, N.
Curto, G. Lo
Lovis, C.
Mehner, A.
Molaro, P.
Pepe, F.
Santos, N. C.
Ségransan, D.
Sosnowska, D.
Rebolo, R.
Mascareño, A. Suárez
Sozzetti, A.
Udry, S.
Wehbe, B.
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
Solar and Stellar Astrophysics
We analyse ESPRESSO data for the stars HD10700, HD20794, HD102365, and HD304636 acquired via its Guaranteed Time Observations (GTO) programme. We characterise the stars' radial velocity (RV) signals down to a precision of 10 cm/s on timescales ranging from minutes to planetary periods falling within the host's habitable zone (HZ). We study the RV signature of pulsation, granulation, and stellar activity, inferring the potential presence of planets around these stars. Thus, we outline the population of planets that while undetectable remain compatible with the available data. A simple model of stellar pulsations successfully reproduced the intra-night RV scatter of HD10700 down to a few cm/s. For HD102365 and HD20794, an additional source of scatter at the level of several 10 cm/s remains necessary to explain the data. A kima analysis was used to evaluate the number of planets supported by the nightly averaged time series of each of HD10700, HD102365, and HD304636, under the assumption that a quasi-periodic Gaussian process (GP) regression is able to model the activity signal. While a frequency analysis of HD10700 RVs is able to identify a periodic signal at 20d, when it is modelled along with the activity signal the signal is formally non-significant. ESPRESSO data on their own do not provide conclusive evidence for the existence of planets around these three stars. ESPRESSO is shown to reach an on-sky RV precision of better than 10 cm/s on short timescales (<1h) and of 40 cm/s over 3.5 yr. A subdivision of the datasets showcases a precision reaching 20-30 cm/s over one year. These results impose stringent constraints on the impact of granulation mechanisms on RV. In spite of no detections, our analysis of HD10700 RVs demonstrates a sensitivity to planets with a mass of 1.7M$_{\oplus}$ for periods of up to 100 d, and a mass of 2-5M$_{\oplus}$ for the star's HZ. (abridged)
title A comprehensive study on radial velocity signals using ESPRESSO: Pushing precision to the 10 cm/s level
topic Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2507.07514