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Massive stars asteroseismology in the TESS era: pulsations and binarity in young Galactic clusters

nardini, federica; Bowman, Dominic; Bodensteiner, Julia

Abstract

Massive stars are the progenitors of neutron stars, black holes and gravitational wave sources, yet their internal structure and evolution remain poorly constrained. A major complication for an (asteroseismic) analysis of massive stars is binarity. Numerous surveys demonstrated that the majority of massive stars are found in multiple systems making interaction phases of mass transfer highly likely. The variety of potential post-interaction products means single-star evolution models are not applicable anymore. Moreover, the amount of internal mixing influences a massive star's main-sequence lifetime and its helium core mass, which in turns dictates the type of compact object remnant. Fortunately, pulsations mitigate these uncertainties and allow asteroseismology to calibrate the internal structure and evolution of massive stars, especially if coupled with binary modelling. To achieve this, we need stringent observational constraints on pulsating massive binaries. In this talk, I will present the photometric analysis of 74 early B-type stars in four young Galactic clusters, performed using high-precision time series photometry provided by TESS. I will show how both binarity and pulsations are nearly ubiquitous, since the overall binary fraction of the clusters is about 80%, and nearly all stars exhibit pulsational variability. By constructing an asteroseismic Hertzsprung–Russell diagram, I will explore the impact of binarity on pulsation properties and discuss particularly interesting objects. These findings emphasise that neither binarity nor pulsations can be ignored when studying massive star evolution. Finally, we showcase the potential of using TESS in optimising target lists for future PLATO proposals of massive stars in clusters.

Full text

Massive stars asteroseismology in the TESS era: pulsations and binarity in young Galactic clusters Federica Nardini Dominic M. Bowman, Julia Bodensteiner, Hugues Sana, Laurent Mahy, Kunal Deshmukh, Pieterjan Van Daele 9th TESS/16th Kepler Asteroseismic Science Consortium Workshop, 7th - 11th July 2025 Federica Nardini 2 (Almost) all of massive stars are multiples ●>70% of them will interact [Sana+ 2012; de Mink+ 2015 ] ●Large uncertainties on their evolution and internal structure ●Only few confirmed post-interaction products [Götberg+ 2023; Villaseñor+ 2023; Frost+ 2024] Credit:ESO/VPHAS+ team. Acknowledgement: CASU HD 148937 Federica Nardini 3 Cluster properties ●Coeval evolution [Lada+ 2003; Tayar+ 2025 ] ●Same environmental properties ●Laboratories to study preand postinteraction systems [Wang+ 2020; Bodensteiner+ 2021] [Figure from Bodensteiner+ 2021] Federica Nardini 4 (Almost) all of massive stars pulsates [Figure from Kurtz+ 2022; see reviews by Aerts+ 2010; Bowman 2020] ●Pulsations affects the internal mixing, and therefore the core masses ●Orbital period ~ Pulsation period ●Asteroseismology can help us identify post-interaction products [Figure from Henneco+ 2024, see his talk on wednesday] [Figure from Wagg+ 2024] Federica Nardini 5 The sample ●HERMES Spectroscopic characterisation ●~80 early B-type main-sequence stars (5M☉<M*<16M☉) ●Four different Galactic open clusters aged between 15 and 30 Myr [Picture by Péter I. Pápics] Federica Nardini 6 The sample ●HERMES Spectroscopic characterisation ●~80 early B-type main-sequence stars (5M☉<M*<16M☉) ●Four different Galactic open clusters aged between 15 and 30 Myr ➔Intrinsic binary fraction ~80% ➔Homogenous binary fraction across this age range ➔Differences in the orbital parameters distributions compared to previous surveys [Nardini+ 2025] [Picture by Péter I. Pápics] Federica Nardini 7 TESS Photometric characterisation ●Same sample of stars ●On average 3 TESS sectors per star ●Overcrowded fields [Lightkurve Collaboration, 2018] Federica Nardini 8 TESS Photometric characterisation Simple Aperture Photometry [Lightkurve Collaboration, 2018] Federica Nardini 9 TESS Photometric characterisation Point Spread Function [Lightkurve Collaboration, 2018, Bowman+ 2024, see P. Van Daele talk on thursday] Federica Nardini 16 Everything else Orbital Period [d] 1st Harmonic [d] Federica Nardini 17 Orbital Period [d] 1st Harmonic [d] Federica Nardini 18 Pulsating Be binary B2e V P ≃ 2.4 d e ≃ 0.2 Federica Nardini 19 Pulsating Be binary B2e V P ≃ 2.4 d e ≃ 0.2 Preor postinteraction product? Federica Nardini 20 Conclusions ●Spectroscopic and photometric characterization of a sample of early B-type MS stars ●Almost all early B-type stars are in a binary and pulsate constrained surface and core masses and radii ●spectroscopy + photometry + cluster properties evolutionary stage of the star Binarity Pulsation Host cluster Modelling Federica Nardini Extra slides 21 Federica Nardini 22 Binarity across the sHRD [Burssens+ 2020, Nardini+ 2025] Federica Nardini 23 Orbital Period [d] 1st Harmonic [d] Federica Nardini 24 Which one is the real binary? Federica Nardini 25 B2 V P ≃ 4.5 d e ≃ 0