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Katerina Neumannova

Publications and source records attributed to Katerina Neumannova.

2 recordsLinked to original sources

The different methods to calculate cluster membership probabilities

Reliable membership determination is a fundamental step in the study of star clusters. With the advent of $Gaia$ astrometry, a wide range of statistical and machine-learning techniques has been developed to assign membership probabilities. However, the current situation of membership lists is very unsatisfactory. This review summarises the main methodologies, compares their strengths and limitations, and discusses future directions. The aim is to provide a comprehensive overview and to lead to a more efficient and reliable approach for the forthcoming $Gaia$ DR4. Basically, we know of spatial, classical kinematic, and photometric methods, as well as maximum likelihood and Bayesian statistical methods, and machine learning and clustering algorithms. These different methods come with many modifications and flavours. We assessed all the advantages and disadvantages of the known methods to determine cluster membership probabilities. Although nowadays most methods are based on poor statistical numerics, the more robust algorithms should still be taken into account. It is important to apply and compare several methods. The next step must be to define a list of standard star clusters to test and verify all known methods. The list must cover the complete grid of cluster parameters (age, distance, reddening, and metallicity) and total masses.

astro-ph.GA

On the current status of tidal tails of Galactic open clusters

Tidal tails of open clusters provide direct observational evidence of cluster mass loss and dynamical interaction with the Galactic tidal field. The advent of $Gaia$ astrometry has enabled systematic detection of extended stellar structures around nearby clusters, revealing that many systems exhibit complex and extended morphologies beyond their classical tidal radii. In this review, we summarise the current observational and theoretical status of tidal tails in open clusters, focusing on results obtained in the $Gaia$ era. We compare different detection methodologies, including density-based clustering, probabilistic models, and orbit-based selection techniques, and discuss how methodological choices influence the inferred morphology of tidal structures. While the Hyades remains the most robust example of well-defined tidal tails, other clusters show a wide range of extended features with varying degrees of coherence and symmetry. We argue that the diversity of reported results reflects both genuine astrophysical variation and systematic differences in analysis approaches. We outline prospects enabled by upcoming astrometric, spectroscopic, and photometric surveys, which will allow a more unified and physically consistent understanding of cluster dissolution in the Milky Way.

astro-ph.GA