English

Retarded Stellar Dynamo in Tidally Deformed M Dwarfs

Solar and Stellar Astrophysics 2026-03-19 v1

Abstract

Current studies of stellar dynamos primarily focus on spherical stars, leaving their behavior in distorted stars largely unexplored. We utilize stars of varying distortions to examine the relation between stellar cycle periods (PcycP_{\rm cyc}) and rotational periods (ProtP_{\rm rot}), which are closely linked to dynamo processes. By analyzing a sample of tidally distorted M dwarfs in cataclysmic variables, we identify an anti-correlation between PcycP_{\rm cyc} and ProtP_{\rm rot}, in contrast to the lack of such a relation in single M dwarfs. This means that stars with greater deformation have longer cycle periods, suggesting variations in dynamo behavior under non-spherical geometries. Our numerical simulations further reveal that, the thermal convection weakens in highly distorted stars, and subsequently, the differential rotation is also reduced. These effects may lengthen the conversion timescale between poloidal and toroidal magnetic fields, potentially explaining the newly discovered PcycP_{\rm cyc}-ProtP_{\rm rot} relation in cataclysmic variables.

Keywords

Cite

@article{arxiv.2602.21683,
  title  = {Retarded Stellar Dynamo in Tidally Deformed M Dwarfs},
  author = {Song Wang and Wenbo Li and Henggeng Han and Dali Kong and Jifeng Liu and Xinlin Zhao},
  journal= {arXiv preprint arXiv:2602.21683},
  year   = {2026}
}

Comments

7 figures and 1 table in main text; 5 tables and 1 figure in supplement. Accepted by SCPMA

R2 v1 2026-07-01T10:51:33.070Z