PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 25, 2026Universe0 citationsOpen Access

K2 Photometry and Long-Term Hα Variability in Four Previously Unreported Be Stars

View Full Paper
APAlan Wagner PereiraEJE. Janot-PachecoJEJéssica Mayara Eidam

Key Points

  • This research investigates the long-term Hα variability in four previously unclassified Be stars through K2 photometry and ground-based spectroscopy.
  • Analyzed K2 light curves and variability frequencies using Lomb–Scargle periodograms.
  • Conducted ground-based spectroscopy with repeated Hα observations from 2017 to 2025.
  • Used a conservative detection threshold of signal-to-noise ratio ≥ 5.
  • All four stars showed K2 variability with timescales from hours to days.
  • Frequency spectra revealed multi-periodic components and low-frequency dominance.
  • Hα emission profiles exhibited long-term changes, suggesting disk variability over years.

Abstract

Classical Be stars are key laboratories for investigating how rapid rotation, pulsations, and mass loss couple to the formation and evolution of circumstellar decretion disks. However, few studies have combined Kepler/K2 photometry with multi-epoch Hα monitoring. Here we present four previously unclassified Be-type variable stars observed by K2 (three in Campaign 11 and one in Campaign 15) and followed up with ground-based spectroscopy. We analyzed public PDC light curves and extracted variability frequencies using Lomb–Scargle periodograms and iterative prewhitening with a conservative detection threshold of S/N ≥ 5. Optical spectra obtained at the Observatório Pico dos Dias (Brazil) over a multi-year baseline (2017–2025) include repeated Hα observations and blue-region spectra for photospheric characterization. All targets show detectable K2 variability on timescales from hours to days, with frequency spectra ranging from close multi-periodic components producing beating patterns to power dominated by low frequencies. Each star exhibits Hα emission at multiple epochs, with long-term changes in line-profile morphology and equivalent width, indicating disk variability on year-long timescales. These results demonstrate that disk evolution can occur without conspicuous photometric outbursts over the time span of space-based observations, highlighting the diagnostic value of combining high-precision space photometry with long-term spectroscopy to characterize multiscale variability in Galactic Be stars.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Pereira et al. (2026) studied this question.

synapsesocial.com/papers/69c37bb3b34aaaeb1a67e65ahttps://doi.org/10.3390/universe12030088
Ask AI
Helpful
Bookmark
Share
View Full Paper