A numerical modeling of rotating substellar objects up to mass-shedding limits
arXiv:2210.17068 · doi:10.1093/mnras/stac3143
Abstract
Rotation may affect the occurrence of sustainable hydrogen burning in very low-mass stellar objects by the introduction of centrifugal force to the hydrostatic balance as well as by the appearance of rotational break-up of the objects (mass-shedding limit) for rapidly rotating cases. We numerically construct the models of rotating very low-mass stellar objects that may or may not experience sustained nuclear reaction (hydrogen-burning) as their energy source. The rotation is not limited to being slow so the effect of the rotational deformation of them is not infinitesimally small. Critical curves of sustainable hydrogen burning in the parameter space of mass versus central degeneracy, on which the nuclear energy generation balances the surface luminosity, are obtained for different values of angular momentum. It is shown that if the angular momentum exceeds the threshold the critical curve is broken up into two branches with lower and higher degeneracy because of the mass-shedding limit. Based on the results, we model mechano-thermal evolutions of substellar objects, in which cooling, as well as mass/angular momentum reductions, are followed for two simplified cases. The case with such external braking mechanisms as magnetized wind or magnetic braking is mainly controlled by the spin-down timescale. The other case with no external braking leads to the mass-shedding limit after gravitational contraction. Thereafter the object sheds its mass to form a ring or a disc surrounding it and shrinks.
12 pages, 11 figures. References revised. To appear in MNRAS
References in corpus (8)
- New evolutionary models for pre-main sequence and main sequence low-mass stars down to the hydrogen-burning limit
- Line and Mean Opacities for Ultracool Dwarfs and Extrasolar Planets
- Weather on Other Worlds. V. The Three Most Rapidly Rotating Ultra-Cool Dwarfs
- Rotation periods for very low mass stars in the Pleiades
- Variable and polarized radio emission from the T6 brown dwarf WISEP J112254.73+255021.5
- Analytic Models of Brown Dwarfs and The Substellar Mass Limit
- Stable Hydrogen burning limits in rapidly rotating very low mass objects
- Where to find over-massive brown dwarfs: new benchmark systems for binary evolution