New Spatially Resolved Observations of Betelgeuse from the VLA and ALMA: Evidence for Atmospheric Perturbations from a Close Companion

Abstract We present new spatially resolved observations of the red supergiant Betelgeuse ( α Orionis) at seven frequencies: 22 GHz ( λ 1.4cm), 44 GHz ( λ 6.8 mm), 107 GHz ( λ 2.8 mm), 136 GHz ( λ 2.2 mm), 224 GHz ( λ 1.3 mm), 338 GHz ( λ 0.89 mm), and 485 GHz ( λ 0.62 mm), using the Karl G. Jansky Very Large Array and the Atacama Large Millimeter/submillimeter Array. These observations (spanning 2021–2026) enable a characterization of the mean brightness temperature ( T B ), shape, and symmetry of the star’s extended atmosphere. At 22 GHz and 44 GHz T B has increased following the historic lows observed in 2019, just prior to the Great Dimming of late 2019/early 2020. We find that T B peaks at a larger projected radius (≳2.7 R ⋆ ) than in measurements prior to 2016, consistent with a possible evolution in the atmospheric density profile. In addition we find a systematic decrease in T B from ≈3500 K at ∼2.7 R ⋆ to T B ≈ 2220 K at ∼1.2 R ⋆ , confirming a previously reported temperature minimum between the photosphere and chromosphere. At all observed frequencies T B is lower than temperatures inferred from ultraviolet measurements at comparable radii, indicating the continued presence of cooler plasma ( T ≤ T eff ) mixed with the warmer chromospheric material. The new measurements yield a global spectral index α = 1.35 ± 0.03, with no evidence for a change in α over more than two decades in frequency. Recently, evidence of a close-in companion to Betelgeuse has been reported, with an orbital separation r ∼ 2.3 R ⋆ . We have identified a correlation between the ellipticity of Betelgeuse, as obtained from radio measurements, and the companion’s orbital phase. The results are consistent with periodic perturbations of the atmosphere by the companion.

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Journal
The Astronomical Journal
Published
2026-09-01
DOI
https://doi.org/10.3847/1538-3881/ae953d
Primary Topic
Astrophysics and Star Formation Studies
Type
article
Field-Weighted Citation Impact
0.00

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article

New Spatially Resolved Observations of Betelgeuse from the VLA and ALMA: Evidence for Atmospheric Perturbations from a Close Companion

L. D. Matthews, A. K. Dupree, W. R. F. Dent, A. M. S. Richards
The Astronomical Journal
Astrophysics and Star Formation Studies
article

New Spatially Resolved Observations of Betelgeuse from the VLA and ALMA: Evidence for Atmospheric Perturbations from a Close Companion

L. D. Matthews, A. K. Dupree, W. R. F. Dent, A. M. S. Richards
article en

Abstract

Abstract We present new spatially resolved observations of the red supergiant Betelgeuse ( α Orionis) at seven frequencies: 22 GHz ( λ 1.4cm), 44 GHz ( λ 6.8 mm), 107 GHz ( λ 2.8 mm), 136 GHz ( λ 2.2 mm), 224 GHz ( λ 1.3 mm), 338 GHz ( λ 0.89 mm), and 485 GHz ( λ 0.62 mm), using the Karl G. Jansky Very Large Array and the Atacama Large Millimeter/submillimeter Array. These observations (spanning 2021–2026) enable a characterization of the mean brightness temperature ( T B ), shape, and symmetry of the star’s extended atmosphere. At 22 GHz and 44 GHz T B has increased following the historic lows observed in 2019, just prior to the Great Dimming of late 2019/early 2020. We find that T B peaks at a larger projected radius (≳2.7 R ⋆ ) than in measurements prior to 2016, consistent with a possible evolution in the atmospheric density profile. In addition we find a systematic decrease in T B from ≈3500 K at ∼2.7 R ⋆ to T B ≈ 2220 K at ∼1.2 R ⋆ , confirming a previously reported temperature minimum between the photosphere and chromosphere. At all observed frequencies T B is lower than temperatures inferred from ultraviolet measurements at comparable radii, indicating the continued presence of cooler plasma ( T ≤ T eff ) mixed with the warmer chromospheric material. The new measurements yield a global spectral index α = 1.35 ± 0.03, with no evidence for a change in α over more than two decades in frequency. Recently, evidence of a close-in companion to Betelgeuse has been reported, with an orbital separation r ∼ 2.3 R ⋆ . We have identified a correlation between the ellipticity of Betelgeuse, as obtained from radio measurements, and the companion’s orbital phase. The results are consistent with periodic perturbations of the atmosphere by the companion.

The Astronomical JournalVol. 172(3)
Atacama Large Millimeter Submillimeter Array (CL), University of Manchester (GB), Center for Astrophysics Harvard & Smithsonian (US), Northeast Radio Observatory Corporation (US), Massachusetts Institute of Technology (US)
National Science Foundation, National Aeronautics and Space Administration, Space Telescope Science Institute, National Radio Astronomy Observatory, Korea Astronomy and Space Science Institute, National Astronomical Observatory of Japan, National Institutes of Natural Sciences
Openalex Percentile: Top 20%
Astrophysics and Star Formation Studies
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