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首页> 外文期刊>Astronomy and astrophysics >Spin-orbit alignment in the very low mass binary regime - The L dwarf tight binary 2MASSW J0746425+200032AB
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Spin-orbit alignment in the very low mass binary regime - The L dwarf tight binary 2MASSW J0746425+200032AB

机译:低质量二元态下的自旋轨道对准-L矮二元紧密型2MASSW J0746425 + 200032AB

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Studies of solar-type binaries have found coplanarity between the equatorial and orbital planes of systems with <40 AU separation. By comparison, the alignment of the equatorial and orbital axes in the substellar regime, and the associated implications for formation theory, are relatively poorly constrained. Here we present the discovery of the rotation period of 3.32?±??0.15 h from 2MASS J0746+20A – the primary component of a tight (2.7 AU) ultracool dwarf binary system (L0+L1.5). The newly discovered period, together with the established period via radio observations of the other component, and the well constrained orbital parameters and rotational velocity measurements, allow us to infer alignment of the equatorial planes of both components with the orbital plane of the system to within 10 degrees. This result suggests that solar-type binary formation mechanisms may extend down into the brown dwarf mass range, and we consider a number of formation theories that may be applicable in this case. This is the first such observational result in the very low mass binary regime. In addition, the detected period of 3.32?±?0.15 h implies that the reported radio period of 2.07?±?0.002 h is associated with the secondary star, not the primary, as was previously claimed. This in turn refutes the claimed radius of 0.78?±?0.1 RJ for 2MASS J0746+20A, which we demonstrate to be 0.99?±?0.03 RJ.
机译:对太阳型双星的研究发现,间隔小于40 AU的系统的赤道平面和轨道平面共面。相比之下,亚星区的赤道轴和轨道轴的对准以及对地层理论的相关影响相对较弱。在这里,我们介绍从2MASS J0746 + 20A –紧密(2.7 AU)超冷矮矮二元系统(L0 + L1.5)的主要组成部分中发现的旋转周期3.32±±0.15 h。新发现的周期,加上通过其他组件的无线电观测所确定的周期,以及轨道参数和旋转速度测量值的严格约束,使我们能够推断出两个组件的赤道面与系统的轨道面的对准度在10度这一结果表明,太阳型二元形成机制可能向下延伸到褐矮星质量范围,我们考虑了许多在这种情况下可能适用的形成理论。这是非常低质量的二元体系中的第一个这样的观测结果。另外,探测到的3.32±±0.15h的周期意味着所报告的2.07±±0.002h的射电周期与次级恒星有关,而不是与先前所声称的初级星有关。这反过来反驳了2MASS J0746 + 20A要求的半径0.78?±?0.1 RJ,我们证明是0.99?±?0.03 RJ。

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