Saved in:
Bibliographic Details
Main Authors: Kálmán, Sz., Simon, A. E., Deline, A., Csizmadia, Sz., Szabó, Gy. M., Ehrenreich, D., Wilson, T. G., Günther, M. N., Heitzmann, A., Sousa, S. G., Farnir, M., Bonfanti, A., Smith, A. M. S., Pál, A., Scandariato, G., Adibekyan, V., Brandeker, A., Charnoz, S., Akinsanmi, B., Barros, S. C. C., Song, X., Alibert, Y., Alonso, R., Bárczy, T., Navascues, D. Barrado, Baumjohann, W., Benz, W., Billot, N., Biondi, F., Borsato, L., Broeg, C., Cameron, A. Collier, van Damme, C. Corral, Correia, A. C. M., Cubillos, P. E., Davies, M. B., Deleuil, M., Demangeon, O. D. S., Demory, B. -O., Derekas, A., Edwards, B., Egger, J. A., Erikson, A., Fortier, A., Fossati, L., Fridlund, M., Gandolfi, D., Gazeas, K., Gillon, M., Güdel, M., Guterman, P., Hasiba, J., Helling, Ch., Isaak, K. G., Kiss, L. L., Korth, J., Lam, K. W. F., Laskar, J., Etangs, A. Lecavelier des, Leleu, A., Lendl, M., Magrin, D., Maxted, P. F. L., Merín, B., Mordasini, C., Munari, M., Nascimbeni, V., Olofsson, G., Ottensamer, R., Pagano, I., Pallé, E., Peter, G., Piazza, D., Piotto, G., Pollacco, D., Queloz, D., Ragazzoni, R., Rando, N., Rauer, H., Ribas, I., Santos, N. C., Ségransan, D., Stalport, M., Sulis, S., Udry, S., Ulmer, B., Ulmer-Moll, S., Van Grootel, V., Venturini, J., Villaver, E., Walton, N. A., Wolf, S., Zingales, T.
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2507.15318
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866918146148925440
author Kálmán, Sz.
Simon, A. E.
Deline, A.
Csizmadia, Sz.
Szabó, Gy. M.
Ehrenreich, D.
Wilson, T. G.
Günther, M. N.
Heitzmann, A.
Sousa, S. G.
Farnir, M.
Bonfanti, A.
Smith, A. M. S.
Pál, A.
Scandariato, G.
Adibekyan, V.
Brandeker, A.
Charnoz, S.
Akinsanmi, B.
Barros, S. C. C.
Song, X.
Alibert, Y.
Alonso, R.
Bárczy, T.
Navascues, D. Barrado
Baumjohann, W.
Benz, W.
Billot, N.
Biondi, F.
Borsato, L.
Broeg, C.
Cameron, A. Collier
van Damme, C. Corral
Correia, A. C. M.
Cubillos, P. E.
Davies, M. B.
Deleuil, M.
Demangeon, O. D. S.
Demory, B. -O.
Derekas, A.
Edwards, B.
Egger, J. A.
Erikson, A.
Fortier, A.
Fossati, L.
Fridlund, M.
Gandolfi, D.
Gazeas, K.
Gillon, M.
Güdel, M.
Guterman, P.
Hasiba, J.
Helling, Ch.
Isaak, K. G.
Kiss, L. L.
Korth, J.
Lam, K. W. F.
Laskar, J.
Etangs, A. Lecavelier des
Leleu, A.
Lendl, M.
Magrin, D.
Maxted, P. F. L.
Merín, B.
Mordasini, C.
Munari, M.
Nascimbeni, V.
Olofsson, G.
Ottensamer, R.
Pagano, I.
Pallé, E.
Peter, G.
Piazza, D.
Piotto, G.
Pollacco, D.
Queloz, D.
Ragazzoni, R.
Rando, N.
Rauer, H.
Ribas, I.
Santos, N. C.
Ségransan, D.
Stalport, M.
Sulis, S.
Udry, S.
Ulmer, B.
Ulmer-Moll, S.
Van Grootel, V.
Venturini, J.
Villaver, E.
Walton, N. A.
Wolf, S.
Zingales, T.
author_facet Kálmán, Sz.
Simon, A. E.
Deline, A.
Csizmadia, Sz.
Szabó, Gy. M.
Ehrenreich, D.
Wilson, T. G.
Günther, M. N.
Heitzmann, A.
Sousa, S. G.
Farnir, M.
Bonfanti, A.
Smith, A. M. S.
Pál, A.
Scandariato, G.
Adibekyan, V.
Brandeker, A.
Charnoz, S.
Akinsanmi, B.
Barros, S. C. C.
Song, X.
Alibert, Y.
Alonso, R.
Bárczy, T.
Navascues, D. Barrado
Baumjohann, W.
Benz, W.
Billot, N.
Biondi, F.
Borsato, L.
Broeg, C.
Cameron, A. Collier
van Damme, C. Corral
Correia, A. C. M.
Cubillos, P. E.
Davies, M. B.
Deleuil, M.
Demangeon, O. D. S.
Demory, B. -O.
Derekas, A.
Edwards, B.
Egger, J. A.
Erikson, A.
Fortier, A.
Fossati, L.
Fridlund, M.
Gandolfi, D.
Gazeas, K.
Gillon, M.
Güdel, M.
Guterman, P.
Hasiba, J.
Helling, Ch.
Isaak, K. G.
Kiss, L. L.
Korth, J.
Lam, K. W. F.
Laskar, J.
Etangs, A. Lecavelier des
Leleu, A.
Lendl, M.
Magrin, D.
Maxted, P. F. L.
Merín, B.
Mordasini, C.
Munari, M.
Nascimbeni, V.
Olofsson, G.
Ottensamer, R.
Pagano, I.
Pallé, E.
Peter, G.
Piazza, D.
Piotto, G.
Pollacco, D.
Queloz, D.
Ragazzoni, R.
Rando, N.
Rauer, H.
Ribas, I.
Santos, N. C.
Ségransan, D.
Stalport, M.
Sulis, S.
Udry, S.
Ulmer, B.
Ulmer-Moll, S.
Van Grootel, V.
Venturini, J.
Villaver, E.
Walton, N. A.
Wolf, S.
Zingales, T.
contents Despite the ever-increasing number of known exoplanets, no uncontested detections have been made of their satellites, known as exomoons. The quest to find exomoons is at the forefront of exoplanetary sciences. Certain space-born instruments are thought to be suitable for this purpose. We show the progress made with the CHaracterizing ExOPlanets Satellite (CHEOPS) in this field using the HD 95338 planetary system. We present a novel methodology as an important step in the quest to find exomoons. We utilize ground-based spectroscopic data in combination with Gaia observations to obtain precise stellar parameters. These are then used as input in the analysis of the planetary transits observed by CHEOPS and the Transiting Exoplanet Survey Satellite (TESS). In addition, we search for the signs of satellites primarily in the form of additional transits in the Hill sphere of the eccentric Neptune-sized planet HD 95338b in a sequential approach based on four CHEOPS visits. We also briefly explore the transit timing variations of the planet. We present refined stellar and planetary parameters, narrowing down the uncertainty on the planet-to-star radius ratio by a factor of $10$. We also pin down the ephemeris of HD 95338b. Using injection/retrieval tests, we show that a $5 σ$ detection of an exomoon would be possible at $R_{\rm Moon} = 0.8$~$R_\oplus$ with the methodology presented here. We exclude the transit of an exomoon in the system with $R_{\rm Moon} \approx 0.6$~$R_\oplus$ at the $1σ$ level. The algorithm used for finding the transit-like event can be used as a baseline for other similar targets, observed by CHEOPS or other missions.
format Preprint
id arxiv_https___arxiv_org_abs_2507_15318
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The CHEOPS view of HD 95338b: refined transit parameters, and a search for exomoons
Kálmán, Sz.
Simon, A. E.
Deline, A.
Csizmadia, Sz.
Szabó, Gy. M.
Ehrenreich, D.
Wilson, T. G.
Günther, M. N.
Heitzmann, A.
Sousa, S. G.
Farnir, M.
Bonfanti, A.
Smith, A. M. S.
Pál, A.
Scandariato, G.
Adibekyan, V.
Brandeker, A.
Charnoz, S.
Akinsanmi, B.
Barros, S. C. C.
Song, X.
Alibert, Y.
Alonso, R.
Bárczy, T.
Navascues, D. Barrado
Baumjohann, W.
Benz, W.
Billot, N.
Biondi, F.
Borsato, L.
Broeg, C.
Cameron, A. Collier
van Damme, C. Corral
Correia, A. C. M.
Cubillos, P. E.
Davies, M. B.
Deleuil, M.
Demangeon, O. D. S.
Demory, B. -O.
Derekas, A.
Edwards, B.
Egger, J. A.
Erikson, A.
Fortier, A.
Fossati, L.
Fridlund, M.
Gandolfi, D.
Gazeas, K.
Gillon, M.
Güdel, M.
Guterman, P.
Hasiba, J.
Helling, Ch.
Isaak, K. G.
Kiss, L. L.
Korth, J.
Lam, K. W. F.
Laskar, J.
Etangs, A. Lecavelier des
Leleu, A.
Lendl, M.
Magrin, D.
Maxted, P. F. L.
Merín, B.
Mordasini, C.
Munari, M.
Nascimbeni, V.
Olofsson, G.
Ottensamer, R.
Pagano, I.
Pallé, E.
Peter, G.
Piazza, D.
Piotto, G.
Pollacco, D.
Queloz, D.
Ragazzoni, R.
Rando, N.
Rauer, H.
Ribas, I.
Santos, N. C.
Ségransan, D.
Stalport, M.
Sulis, S.
Udry, S.
Ulmer, B.
Ulmer-Moll, S.
Van Grootel, V.
Venturini, J.
Villaver, E.
Walton, N. A.
Wolf, S.
Zingales, T.
Earth and Planetary Astrophysics
Despite the ever-increasing number of known exoplanets, no uncontested detections have been made of their satellites, known as exomoons. The quest to find exomoons is at the forefront of exoplanetary sciences. Certain space-born instruments are thought to be suitable for this purpose. We show the progress made with the CHaracterizing ExOPlanets Satellite (CHEOPS) in this field using the HD 95338 planetary system. We present a novel methodology as an important step in the quest to find exomoons. We utilize ground-based spectroscopic data in combination with Gaia observations to obtain precise stellar parameters. These are then used as input in the analysis of the planetary transits observed by CHEOPS and the Transiting Exoplanet Survey Satellite (TESS). In addition, we search for the signs of satellites primarily in the form of additional transits in the Hill sphere of the eccentric Neptune-sized planet HD 95338b in a sequential approach based on four CHEOPS visits. We also briefly explore the transit timing variations of the planet. We present refined stellar and planetary parameters, narrowing down the uncertainty on the planet-to-star radius ratio by a factor of $10$. We also pin down the ephemeris of HD 95338b. Using injection/retrieval tests, we show that a $5 σ$ detection of an exomoon would be possible at $R_{\rm Moon} = 0.8$~$R_\oplus$ with the methodology presented here. We exclude the transit of an exomoon in the system with $R_{\rm Moon} \approx 0.6$~$R_\oplus$ at the $1σ$ level. The algorithm used for finding the transit-like event can be used as a baseline for other similar targets, observed by CHEOPS or other missions.
title The CHEOPS view of HD 95338b: refined transit parameters, and a search for exomoons
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2507.15318