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Gaia's revolution in stellar variability

1 Pith paper cite this work, alongside 1 external citations. Polarity classification is still indexing.

1 Pith paper citing it
1 external citations · Pith
abstract

Stellar variability studies are now reaching a completely new level thanks to ESA's Gaia mission, which enables us to locate many variable stars in the Hertzsprung-Russell diagram and determine the various instability strips/bands. Furthermore, this mission also allows us to detect, characterise and classify many millions of new variable stars thanks to its very unique nearly simultaneous multi-epoch survey with different instruments (photometer, spectro-photometer, radial velocity spectrometer). An overview of what can be found in literature in terms of mostly data products by the Gaia consortium is given. This concerns the various catalogues of variable stars derived from the Gaia time series and also the location and motion of variable stars in the observational Hertzsprung-Russell diagram. In addition, we provide a list of a few thousands of variable white dwarf candidates derived from the DR2 published data, among them probably many hundreds of new pulsating white dwarfs. On a very different topic, we also show how Gaia allows us to reveal the 3D structures of and around the Milky Way thanks to the RR Lyrae stars.

fields

astro-ph.SR 1

years

2026 1

verdicts

ACCEPT 1

representative citing papers

Cataclysmic variables from SRG/eROSITA: new systems from eRASS1

astro-ph.SR · 2026-07-30 · accept · novelty 6.0

A Random Forest plus Gaia/eROSITA match yields 156 spectroscopically confirmed CVs from eRASS1, spanning subtypes, periods, and luminosities, with the method outperforming several published alternatives.

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Showing 1 of 1 citing paper.

  • Cataclysmic variables from SRG/eROSITA: new systems from eRASS1 astro-ph.SR · 2026-07-30 · accept · none · ref 125 · internal anchor

    A Random Forest plus Gaia/eROSITA match yields 156 spectroscopically confirmed CVs from eRASS1, spanning subtypes, periods, and luminosities, with the method outperforming several published alternatives.