论文标题

部分可观测时空混沌系统的无模型预测

Precise Dynamical Masses of Epsilon Indi Ba and Bb: Evidence of Slowed Cooling at the L/T Transition

论文作者

Chen, Minghan, Li, Yiting, Brandt, Timothy D., Dupuy, Trent J., Cardoso, Cátia V., McCaughrean, Mark J.

论文摘要

我们报告了$ 66.92 \ pm 0.36 \ $ 66.92 \; m_ {jup} $和$ 53.25 \ pm 0.29 \; m_ {jup} $用于二进制棕色矮人$ \ varepsilon $ indi ba和bb,以长期($ \ 10 $ yr)相对轨道监控和VLT上的绝对星形测量数据进行测量。使用NACO的相对天文统计完全约束二进制对的开普勒轨道,而fors2的绝对星形法测量了系统的视差和质量比。我们发现与$ \ varepsilon $ indi a的Hipparcos和Gaia值保持一致的视差,以及$ \ varepsilon $ indi ba与BB的质量比精确到$ 0.2 \%$。 $ \ varepsilon $ indi ba和bb分别具有频谱类型T1-1.5和T6。 $ 3.5^{+0.8} _ { - 1.0} $ gyr的$ \ varepsilon $ indi a的活动,这些棕色矮人为替代型冷却模型提供了一些最精确的基准。假设同时,两个棕色矮人的亮度非常不同,我们的中等质量比意味着陡峭的质量 - 发光关系$ l \ propto m^{5.37 \ pm 0.08} $,可以通过L/T转换缓慢的L/T转换来解释,如先前在其他L/T binararies中观察到的L/T型转换。最后,我们介绍了近红外光度数据的期刊分析,但没有找到具有连贯阶段的周期性信号的确定证据。

We report individual dynamical masses of $66.92 \pm 0.36 \; M_{Jup}$ and $53.25 \pm 0.29 \; M_{Jup}$ for the binary brown dwarfs $\varepsilon$ Indi Ba and Bb, measured from long term ($\approx 10$ yr) relative orbit monitoring and absolute astrometry monitoring data on the VLT. Relative astrometry with NACO fully constrains the Keplerian orbit of the binary pair, while absolute astrometry with FORS2 measures the system's parallax and mass ratio. We find a parallax consistent with the Hipparcos and Gaia values for $\varepsilon$ Indi A, and a mass ratio for $\varepsilon$ Indi Ba to Bb precise to better than $0.2\%$. $\varepsilon$ Indi Ba and Bb have spectral types T1-1.5 and T6, respectively. With an age of $3.5^{+0.8}_{-1.0}$ Gyr from $\varepsilon$ Indi A's activity, these brown dwarfs provide some of the most precise benchmarks for substellar cooling models. Assuming coevality, the very different luminosities of the two brown dwarfs and our moderate mass ratio imply a steep mass-luminosity relationship $L \propto M^{5.37 \pm 0.08}$ that can be explained by a slowed cooling rate in the L/T transition, as previously observed for other L/T binaries. Finally, we present a periodogram analysis of the near-infrared photometric data, but find no definitive evidence of periodic signals with a coherent phase.

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