The GAPS Programme at TNG LXVIII. Characterization of the outer substellar companion around HD 72659 with a multi-technique approach

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Autori principali: Ruggieri, A., Sozzetti, A., Desidera, S., Mesa, D., Gratton, R., Marzari, F., Bonavita, M., Biazzo, K., D'Orazi, V., Ginski, C., Meyer, M., Malavolta, L., Pinamonti, M., Barbato, D., Lazzoni, C., Lanza, A. F., Mancini, L., Naponiello, L., Nardiello, D., Zingales, T., Rainer, M., Scandariato, G., Giacobbe, P., Cosentino, R., Fiorenzano, A., Claudi, R.
Natura: Preprint
Pubblicazione: 2025
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author Ruggieri, A.
Sozzetti, A.
Desidera, S.
Mesa, D.
Gratton, R.
Marzari, F.
Bonavita, M.
Biazzo, K.
D'Orazi, V.
Ginski, C.
Meyer, M.
Malavolta, L.
Pinamonti, M.
Barbato, D.
Lazzoni, C.
Lanza, A. F.
Mancini, L.
Naponiello, L.
Nardiello, D.
Zingales, T.
Rainer, M.
Scandariato, G.
Giacobbe, P.
Cosentino, R.
Fiorenzano, A.
Claudi, R.
author_facet Ruggieri, A.
Sozzetti, A.
Desidera, S.
Mesa, D.
Gratton, R.
Marzari, F.
Bonavita, M.
Biazzo, K.
D'Orazi, V.
Ginski, C.
Meyer, M.
Malavolta, L.
Pinamonti, M.
Barbato, D.
Lazzoni, C.
Lanza, A. F.
Mancini, L.
Naponiello, L.
Nardiello, D.
Zingales, T.
Rainer, M.
Scandariato, G.
Giacobbe, P.
Cosentino, R.
Fiorenzano, A.
Claudi, R.
contents Before discovering the first exoplanets, the Radial Velocity (RV) method had been used for decades to discover binary stars. Despite significant advancements in this technique, it is limited by the intrinsic mass-inclination degeneracy that can be broken when combining RVs with astrometry, which allows us to determine the orbital inclination, or direct imaging, from which we can estimate the true mass of the target. HD 72659 is a solar analog known to host a gas giant on a $\sim 10$-yr orbit and a massive outer companion. This work aims to confirm HD 72659 c, which was recently announced using data from HIRES and HARPS spectrographs in combination with Gaia's astrometric data. We monitored HD 72659 with HARPS-N in the framework of the GAPS project since 2012. We now combined our 91 spectra with literature data and Gaia DR3 high-precision astrometry to constrain the mass and the orbit of this object ($M_{\rm c} \sim 19$ $M_{\rm J}$, $a \sim 21$ au) that falls in the Brown Dwarf desert. Moreover, we analyzed our high-resolution imaging observation taken with SPHERE, but since the target was not detected, we could only derive upper limits on its mass. We characterize the orbital parameters of HD 72659 c, confirming the literature mass of this object but finding a period twice as high as previously reported, and we also refine the parameters of planet b with reduced uncertainties compared to previous works. Finally, we analyze and discuss the dynamic configuration of this system, finding that the Kozai-Lidov mechanism may be at work.
format Preprint
id arxiv_https___arxiv_org_abs_2507_19063
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The GAPS Programme at TNG LXVIII. Characterization of the outer substellar companion around HD 72659 with a multi-technique approach
Ruggieri, A.
Sozzetti, A.
Desidera, S.
Mesa, D.
Gratton, R.
Marzari, F.
Bonavita, M.
Biazzo, K.
D'Orazi, V.
Ginski, C.
Meyer, M.
Malavolta, L.
Pinamonti, M.
Barbato, D.
Lazzoni, C.
Lanza, A. F.
Mancini, L.
Naponiello, L.
Nardiello, D.
Zingales, T.
Rainer, M.
Scandariato, G.
Giacobbe, P.
Cosentino, R.
Fiorenzano, A.
Claudi, R.
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
Solar and Stellar Astrophysics
Before discovering the first exoplanets, the Radial Velocity (RV) method had been used for decades to discover binary stars. Despite significant advancements in this technique, it is limited by the intrinsic mass-inclination degeneracy that can be broken when combining RVs with astrometry, which allows us to determine the orbital inclination, or direct imaging, from which we can estimate the true mass of the target. HD 72659 is a solar analog known to host a gas giant on a $\sim 10$-yr orbit and a massive outer companion. This work aims to confirm HD 72659 c, which was recently announced using data from HIRES and HARPS spectrographs in combination with Gaia's astrometric data. We monitored HD 72659 with HARPS-N in the framework of the GAPS project since 2012. We now combined our 91 spectra with literature data and Gaia DR3 high-precision astrometry to constrain the mass and the orbit of this object ($M_{\rm c} \sim 19$ $M_{\rm J}$, $a \sim 21$ au) that falls in the Brown Dwarf desert. Moreover, we analyzed our high-resolution imaging observation taken with SPHERE, but since the target was not detected, we could only derive upper limits on its mass. We characterize the orbital parameters of HD 72659 c, confirming the literature mass of this object but finding a period twice as high as previously reported, and we also refine the parameters of planet b with reduced uncertainties compared to previous works. Finally, we analyze and discuss the dynamic configuration of this system, finding that the Kozai-Lidov mechanism may be at work.
title The GAPS Programme at TNG LXVIII. Characterization of the outer substellar companion around HD 72659 with a multi-technique approach
topic Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2507.19063