Origin of the Long-Period Radial Velocity Variation in the Red Supergiant HD 216946 (V424 Lac)
Byeong-Cheol Lee, Myeong-Gu Park
astro-ph.SR
Submitted: 2026-07-22
Comments: 8 pages, 4 figures, accepted in JKAS
License: http://creativecommons.org/licenses/by/4.0/
The gist: We present precise radial-velocity (RV) observations of the K-type red supergiant HD 216946 (V424 Lac) obtained over approximately 22 years with the Bohyunsan Optical Astronomy Observatory Echelle
Terminology
Abstract
We present precise radial-velocity (RV) observations of the K-type red supergiant HD 216946 (V424 Lac) obtained over approximately 22 years with the Bohyunsan Optical Astronomy Observatory Echelle Spectrograph (BOES). The RV measurements reveal a significant long-period variability with a period of 1365 days. To investigate its origin, we analyzed the RV data together with line-profile variations (LPVs), chromospheric activity indicators, and published photometric variability. The LPVs exhibit periods of approximately 1370--1380 days, while the Na D lines show a similar periodicity near 1355 days, both comparable to the RV period. In contrast, the H-line indicators display longer periods of 2730--2800 days, approximately twice the RV period. The close correspondence between the RV variations and the activity-related diagnostics strongly suggests that the 1365-day RV signal is primarily linked to chromospheric activity and extended atmospheric variability rather than arising from purely Keplerian motion. Published photometric studies also report additional long-period variability, including a 1601-day long secondary-period (LSP)-like variation. The coexistence of multiple non-identical periods indicates that the observed variability of HD 216946 is unlikely to originate from a single physical mechanism. We therefore interpret HD 216946 as a multiperiodic red supergiant in which several intrinsic stellar processes coexist. The observed variability is most likely dominated by chromospheric activity and large-scale atmospheric dynamics, possibly accompanied by rotational modulation and LSP-like variability, although the presence of a low-mass stellar companion cannot be completely excluded.
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