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Investigating the rotational evolution of very low-mass stars and brown dwarfs in young clusters using Monte Carlo simulations

机译:使用蒙特卡洛模拟研究年轻星团中非常低质量的恒星和褐矮星的旋转演化

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Context. Very low-mass (VLM) stars and brown dwarfs (BDs) present a different rotational behaviour from their solar mass counterparts. Aims. We investigate the rotational evolution of young VLM stars and BDs using Monte Carlo simulations under the hypothesis of disk locking and stellar angular momentum conservation. Methods. We built a set of objects with masses ranging from 0.01? M _(⊙) to 0.4? M _(⊙) and considered models with single- and double-peaked initial period distributions with and without disk locking. An object is considered to be diskless when its mass accretion rate is below a given threshold. Results. Models with initial single-peaked period distributions reproduce the observations well given that BDs rotate faster than VLM stars. We observe a correlation between rotational period and mass when we relax the disk locking hypothesis, but with a shallower slope compared to some observational results. The angular momentum evolution of diskless stars is flatter than it is for stars with a disk which occurs because the moment of inertia of objects less massive than 0.2? M _(⊙) remains pratically constant for a time scale that increases with decreasing stellar mass. Conclusions. Comparing our results with the available observational data we see that disk locking is not as important in the low-mass regime and that the rotational behaviour of VLM stars and BDs is different from what is seen in their solar mass counterparts.
机译:上下文。低质量(VLM)的恒星和褐矮星(BDs)的旋转行为与太阳质量的恒星不同。目的在磁盘锁定和恒星角动量守恒的假设下,我们使用蒙特卡罗模拟研究了年轻的VLM恒星和BD的旋转演化。方法。我们建立了一组质量范围为0.01的对象? M _(⊙)到0.4? M _(⊙)并考虑具有单峰和双峰初始周期分布的模型,带有和不带有磁盘锁定。当对象的质量累积速率低于给定的阈值时,它被认为是无盘的。结果。考虑到BD的旋转速度快于VLM恒星,具有初始单峰周期分布的模型能够很好地再现观测结果。当我们放松磁盘锁定假设时,我们观察到旋转周期与质量之间的相关性,但是与某些观测结果相比,其斜率更浅。无盘恒星的角动量演化比带盘恒星的角动量演化要平坦,这是因为物体质量的惯性矩小于0.2? M_(⊙)在时间尺度上保持恒定不变,该时间尺度随着恒星质量的减小而增加。结论。将我们的结果与可用的观测数据进行比较,我们发现在低质量状态下盘锁定并不那么重要,而且VLM恒星和BD的旋转行为不同于它们在太阳质量对应物中的观测。

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