_version_ 1866915426646097920
author Barrientos, Jonathan Gomez
Greklek-McKeon, Michael
Knutson, Heather A.
Giacalone, Steven
Levine, W. Garrett
Saidel, Morgan
Vissapragada, Shreyas
Ciardi, David R.
Collins, Karen A.
Latham, David W.
Watkins, Cristilyn N.
Budnikova, Polina A.
Cheryasov, Dmitry V.
Fukui, Akihiko
Bieryla, Allyson
Shporer, Avi
Tofflemire, Benjamin M.
Clark, Catherine A.
Stockdale, Chris
Littlefield, Colin
Gilbert, Emily
Palle, Enric
Girardin, Eric
Murgas, Felipe
Bergsten, Galen J.
Osborn, Hugh P.
Crossfield, Ian J. M.
de Leon, Jerome
Higuera, Jesus
Isogai, Keisuke
Everett, Mark E.
Lund, Michael B.
Narita, Norio
Schwarz, Richard P.
Zambelli, Roberto
Howell, Steve B.
author_facet Barrientos, Jonathan Gomez
Greklek-McKeon, Michael
Knutson, Heather A.
Giacalone, Steven
Levine, W. Garrett
Saidel, Morgan
Vissapragada, Shreyas
Ciardi, David R.
Collins, Karen A.
Latham, David W.
Watkins, Cristilyn N.
Budnikova, Polina A.
Cheryasov, Dmitry V.
Fukui, Akihiko
Bieryla, Allyson
Shporer, Avi
Tofflemire, Benjamin M.
Clark, Catherine A.
Stockdale, Chris
Littlefield, Colin
Gilbert, Emily
Palle, Enric
Girardin, Eric
Murgas, Felipe
Bergsten, Galen J.
Osborn, Hugh P.
Crossfield, Ian J. M.
de Leon, Jerome
Higuera, Jesus
Isogai, Keisuke
Everett, Mark E.
Lund, Michael B.
Narita, Norio
Schwarz, Richard P.
Zambelli, Roberto
Howell, Steve B.
contents We present an upgraded version of TRICERATOPS, a software package designed to calculate false positive probabilities for planet candidates identified by the Transiting Exoplanet Survey Satellite (TESS). This enhanced framework now incorporates ground-based light curves in separate bandpasses, which are routinely obtained as part of the candidate vetting process. We apply this upgraded framework to explore the planetary nature of 14 TESS planet candidates, combining primarily J band light curves acquired with the 200-inch Hale Telescope at Palomar Observatory with complementary archival observations from the Las Cumbres Observatory Global Telescope (LCOGT), the Fred Lawrence Whipple Observatory (FLWO), and the Teide Observatory, along with existing TESS data and contrast curves from high-resolution imaging. As a result of this analysis we statistically validate (False Positive Probability < 1.5% and Nearby False Positive Probability < 0.1%) six new planets in five systems: TOI-1346 b, TOI-1346 c, TOI-2719 b, TOI-4155 b, TOI-6000 b, and TOI-6324 b. For these systems, we provide updated estimates of their stellar and planetary properties derived from the TESS and ground-based observations. These new systems contain planets with radii between 0.9-6 Re and orbital periods between 0.3-5.5 days. Finally, we use our upgraded version of TRICERATOPS to quantify the relative importance of multi-wavelength transit photometry and high-resolution imaging for exoplanet candidate validation, and discuss which kinds of candidates typically benefit the most from ground-based multi-color transit observations.
format Preprint
id arxiv_https___arxiv_org_abs_2508_02782
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Validation of TESS Planet Candidates with Multi-Color Transit Photometry and TRICERATOPS+
Barrientos, Jonathan Gomez
Greklek-McKeon, Michael
Knutson, Heather A.
Giacalone, Steven
Levine, W. Garrett
Saidel, Morgan
Vissapragada, Shreyas
Ciardi, David R.
Collins, Karen A.
Latham, David W.
Watkins, Cristilyn N.
Budnikova, Polina A.
Cheryasov, Dmitry V.
Fukui, Akihiko
Bieryla, Allyson
Shporer, Avi
Tofflemire, Benjamin M.
Clark, Catherine A.
Stockdale, Chris
Littlefield, Colin
Gilbert, Emily
Palle, Enric
Girardin, Eric
Murgas, Felipe
Bergsten, Galen J.
Osborn, Hugh P.
Crossfield, Ian J. M.
de Leon, Jerome
Higuera, Jesus
Isogai, Keisuke
Everett, Mark E.
Lund, Michael B.
Narita, Norio
Schwarz, Richard P.
Zambelli, Roberto
Howell, Steve B.
Earth and Planetary Astrophysics
We present an upgraded version of TRICERATOPS, a software package designed to calculate false positive probabilities for planet candidates identified by the Transiting Exoplanet Survey Satellite (TESS). This enhanced framework now incorporates ground-based light curves in separate bandpasses, which are routinely obtained as part of the candidate vetting process. We apply this upgraded framework to explore the planetary nature of 14 TESS planet candidates, combining primarily J band light curves acquired with the 200-inch Hale Telescope at Palomar Observatory with complementary archival observations from the Las Cumbres Observatory Global Telescope (LCOGT), the Fred Lawrence Whipple Observatory (FLWO), and the Teide Observatory, along with existing TESS data and contrast curves from high-resolution imaging. As a result of this analysis we statistically validate (False Positive Probability < 1.5% and Nearby False Positive Probability < 0.1%) six new planets in five systems: TOI-1346 b, TOI-1346 c, TOI-2719 b, TOI-4155 b, TOI-6000 b, and TOI-6324 b. For these systems, we provide updated estimates of their stellar and planetary properties derived from the TESS and ground-based observations. These new systems contain planets with radii between 0.9-6 Re and orbital periods between 0.3-5.5 days. Finally, we use our upgraded version of TRICERATOPS to quantify the relative importance of multi-wavelength transit photometry and high-resolution imaging for exoplanet candidate validation, and discuss which kinds of candidates typically benefit the most from ground-based multi-color transit observations.
title Validation of TESS Planet Candidates with Multi-Color Transit Photometry and TRICERATOPS+
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2508.02782