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March 3, 2026The Astrophysical Journal0 citationsOpen Access

A Multiwavelength Study of the 2025 Low State of the Intermediate Polar BG CMi

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Key Points

  • BG CMi experienced a decrease of approximately 0.5 magnitude lasting about 50 days during its first observed low state, indicating significant activity.
  • Optical monitoring showed a distinct drop in power at the spin frequency ω, implying a change in accretion mode.
  • Analysis of X-ray light curves from XMM-Newton highlighted a shift of power from orbital frequency Ω to 2Ω during the low state, affecting timing profiles.
  • The study suggests BG CMi transitioned to a disk-overflow accretion scenario, with streaming becoming more prominent due to reduced disk size.

Abstract

Abstract We present multiwavelength observations of the first recorded low state of the intermediate polar BG CMi. Optical monitoring of the source by members of the American Association of Variable Star Observers reveals a decrease of ∼0.5 mag that lasted ∼50 days in early 2025. During the low state the optical timing properties imply that BG CMi underwent a change in accretion mode, as power at the spin frequency ω dramatically dropped. An XMM-Newton observation revealed a substantial decrease in intrinsic absorption and a slight increase in intrinsic X-ray luminosity, compared to archival Suzaku data. Timing analysis of the X-ray light curves shows that power shifted from the orbital frequency Ω (prominent in Suzaku data) to 2Ω in the low-state XMM-Newton data, along with strengthening of certain orbital sidebands. We suggest that BG CMi transitioned to disk-overflow accretion, where the white dwarf accreted matter via both a disk and a stream, the latter becoming more dominant during the low state due to a decrease in the mass and size of the disk.

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Cite This Study

A 2026 study studied this question.

synapsesocial.com/papers/69a768babadf0bb9e87e5bc6https://doi.org/10.3847/1538-4357/ae3bca
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