Variability classification of TESS targets in LOPS2, the first long-term pointing field of PLATO. Version 1 of the public variability catalogue

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Main Authors: Kliapets, Mykyta, Huijse, Pablo, Audenaert, Jeroen, Tkachenko, Andrew, Skarka, Marek, Gregory, Paul F. X., Bowman, Dominic M., Murphy, Simon J., Agrawal, Poojan, Benkő, József M., Brinkman, Hannah, Jannsen, Nicholas, Eschen, Yoshi Nike Emilia, Eto, Allison, Fritzewski, Dario J., Kemp, Alex, Khalack, Viktor, Li, Gang, Ochoa-Armenta, Ricardo, Rolo, Inês, Scheller, Nena, Stanley, Rose S., Thomson-Paressant, Keegan, Plachy, Emese, Vanlaer, Vincent, Vanrespaille, Mathijs, Vrancken, Jasmine, Wang, Haotian, Xia, Yian, Ricker, George R., Aerts, Conny
Format: Preprint
Published: 2026
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author Kliapets, Mykyta
Huijse, Pablo
Audenaert, Jeroen
Tkachenko, Andrew
Skarka, Marek
Gregory, Paul F. X.
Bowman, Dominic M.
Murphy, Simon J.
Agrawal, Poojan
Benkő, József M.
Brinkman, Hannah
Jannsen, Nicholas
Eschen, Yoshi Nike Emilia
Eto, Allison
Fritzewski, Dario J.
Kemp, Alex
Khalack, Viktor
Li, Gang
Ochoa-Armenta, Ricardo
Rolo, Inês
Scheller, Nena
Stanley, Rose S.
Thomson-Paressant, Keegan
Plachy, Emese
Vanlaer, Vincent
Vanrespaille, Mathijs
Vrancken, Jasmine
Wang, Haotian
Xia, Yian
Ricker, George R.
Aerts, Conny
author_facet Kliapets, Mykyta
Huijse, Pablo
Audenaert, Jeroen
Tkachenko, Andrew
Skarka, Marek
Gregory, Paul F. X.
Bowman, Dominic M.
Murphy, Simon J.
Agrawal, Poojan
Benkő, József M.
Brinkman, Hannah
Jannsen, Nicholas
Eschen, Yoshi Nike Emilia
Eto, Allison
Fritzewski, Dario J.
Kemp, Alex
Khalack, Viktor
Li, Gang
Ochoa-Armenta, Ricardo
Rolo, Inês
Scheller, Nena
Stanley, Rose S.
Thomson-Paressant, Keegan
Plachy, Emese
Vanlaer, Vincent
Vanrespaille, Mathijs
Vrancken, Jasmine
Wang, Haotian
Xia, Yian
Ricker, George R.
Aerts, Conny
contents The PLAnetary Transits and Oscillations of stars (PLATO) mission is expected to launch in January 2027. A total of 8\% of its data rate will be dedicated to complementary science targets selected from approved Guest Observer proposals. We seek to provide an open-source catalogue of variable stars in PLATO's first long-term observing field, LOPS2. We want to use existing observations from the Transiting Exoplanet Survey Satellite (TESS), which has observed many stars in LOPS2. We classified 38 million calibrated aperture light curves from the TESS-Gaia Light Curve pipeline (TGLC, $G\lesssim17$) for 6 million unique sources in LOPS2 with two machine learning frameworks -- a deep neural network and a feature-based gradient-boosted decision-tree ensemble. We combined their predictions to create this first version of the LOPS2 variability catalogue, performed manual vetting of a sub-sample classified light curves, and a statistical analysis of the results to validate our methodology and to assess the variability properties and parameters of the stars in the catalogue. Our classification resulted in the identification of approximately 72% of the light curves having dominant instrument- or pipeline-induced signal, with the remaining 28% representing 3.6 million individual candidate variable stars, including pulsating, rotating, and eclipsing stars. Candidate pulsators exhibit varied behaviour in terms of their frequencies, amplitudes, rotation, and fundamental parameters. To ensure purity of the samples, filtering on colour, luminosity, the dominant frequency and its amplitude, and presence of close neighbours is helpful. We provide the first version of our PLATO LOPS2 variability catalogue to the community for further study and scrutiny. It is to date one of the largest catalogues of variable stars from an automated classification pipeline.
format Preprint
id arxiv_https___arxiv_org_abs_2604_12758
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Variability classification of TESS targets in LOPS2, the first long-term pointing field of PLATO. Version 1 of the public variability catalogue
Kliapets, Mykyta
Huijse, Pablo
Audenaert, Jeroen
Tkachenko, Andrew
Skarka, Marek
Gregory, Paul F. X.
Bowman, Dominic M.
Murphy, Simon J.
Agrawal, Poojan
Benkő, József M.
Brinkman, Hannah
Jannsen, Nicholas
Eschen, Yoshi Nike Emilia
Eto, Allison
Fritzewski, Dario J.
Kemp, Alex
Khalack, Viktor
Li, Gang
Ochoa-Armenta, Ricardo
Rolo, Inês
Scheller, Nena
Stanley, Rose S.
Thomson-Paressant, Keegan
Plachy, Emese
Vanlaer, Vincent
Vanrespaille, Mathijs
Vrancken, Jasmine
Wang, Haotian
Xia, Yian
Ricker, George R.
Aerts, Conny
Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
The PLAnetary Transits and Oscillations of stars (PLATO) mission is expected to launch in January 2027. A total of 8\% of its data rate will be dedicated to complementary science targets selected from approved Guest Observer proposals. We seek to provide an open-source catalogue of variable stars in PLATO's first long-term observing field, LOPS2. We want to use existing observations from the Transiting Exoplanet Survey Satellite (TESS), which has observed many stars in LOPS2. We classified 38 million calibrated aperture light curves from the TESS-Gaia Light Curve pipeline (TGLC, $G\lesssim17$) for 6 million unique sources in LOPS2 with two machine learning frameworks -- a deep neural network and a feature-based gradient-boosted decision-tree ensemble. We combined their predictions to create this first version of the LOPS2 variability catalogue, performed manual vetting of a sub-sample classified light curves, and a statistical analysis of the results to validate our methodology and to assess the variability properties and parameters of the stars in the catalogue. Our classification resulted in the identification of approximately 72% of the light curves having dominant instrument- or pipeline-induced signal, with the remaining 28% representing 3.6 million individual candidate variable stars, including pulsating, rotating, and eclipsing stars. Candidate pulsators exhibit varied behaviour in terms of their frequencies, amplitudes, rotation, and fundamental parameters. To ensure purity of the samples, filtering on colour, luminosity, the dominant frequency and its amplitude, and presence of close neighbours is helpful. We provide the first version of our PLATO LOPS2 variability catalogue to the community for further study and scrutiny. It is to date one of the largest catalogues of variable stars from an automated classification pipeline.
title Variability classification of TESS targets in LOPS2, the first long-term pointing field of PLATO. Version 1 of the public variability catalogue
topic Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2604.12758