Ensemble asteroseismology of pulsating B-type stars in NGC 6910
D. Mo\'zdzierski, A. Pigulski, Z. Ko{\l}aczkowski, G. Michalska, G., Kopacki, F. Carrier, P. Walczak, A. Narwid, M. St\k{e}\'slicki, J.-N. Fu,, X.-J. Jiang, Ch. Zhang, J. Jackiewicz, J. Telting, T. Morel, S. Saesen, E., Zahajkiewicz, P. Bru\'s, P. \'Sr\'odka, M. Vu\v{c}kovi\'c

TL;DR
This study uses ensemble asteroseismology on pulsating B-type stars in NGC 6910 to determine the cluster's age, stellar parameters, and mode classifications, revealing challenges to current stellar models and suggesting revisions of opacities.
Contribution
It applies ensemble asteroseismology to nine stars in NGC 6910 to accurately determine the cluster's age and identify pulsation modes, highlighting discrepancies with existing theories.
Findings
Derived cluster age of 10.6 Myr with uncertainties
Identified eight β Cep stars and one SPB star in the cluster
Found low-mass β Cep star challenging current models
Abstract
Asteroseismology offers the possibility of probing stellar interiors and testing evolutionary and seismic models. Precise photometry and spectroscopy obtained during multi-site campaigns on young open clusters allows discovering rich samples of pulsating stars and using them in a simultaneous seismic modelling called ensemble asteroseismology. The aim of this study is to obtain the age of the open cluster NGC 6910 by means of ensemble asteroseismology of the early-type pulsating members, to derive their stellar parameters, and to classify the excited modes. We used time-series analysis, performed photometric and spectroscopic mode identification, and calculated grids of evolutionary and seismic models to apply the procedure of ensemble asteroseismology for nine pulsating members of NGC 6910. With two iterations of the procedure of ensemble asteroseismology applied to nine pulsating…
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