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An Effective Temperature Scale for Late M and L Dwarfs, from Resonance Absorption Lines of CsI and RbI

机译:来自CsI和RbI共振吸收谱线的晚期M和L矮星的有效温度标度

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摘要

We present Keck HIRES spectra of 6 late-M dwarfs and 11 L dwarfs. Our goal isto assign effective temperatures to the objects using detailed atmosphericmodels and fine analysis of the alkali resonance absorption lines of CsI andRbI. These yield mutually consistent results (+-150 K) when we use``cleared-dust'' models, which account for the removal of refractory speciesfrom the molecular states but do not include dust opacities. We find a tendencyfor the RbI line to imply a slightly higher temperature, which we ascribe to anincomplete treatment of the overlying molecular opacities. The final effectivetemperatures we adopt are based on the CsI fits alone, though the RbI fitssupport the CsI temperature sequence. This work, in combination with resultsfrom the infrared, hints that dust in these atmospheres has settled out of thehigh atmosphere but is present in the deep photosphere. We also derive radialand rotational velocities for all the objects, finding that the previouslydiscovered trend of rapid rotation for very low mass objects is quitepervasive. To improve on our analysis, there is a clear need for bettermolecular line lists and a more detailed understanding of dust formation anddynamics.
机译:我们介绍了6个晚期M矮人和11个L矮人的Keck HIRES光谱。我们的目标是使用详细的大气模型和对CsI和RbI的碱共振吸收线的精细分析,为物体分配有效温度。当我们使用``清除灰尘''模型时,这些结果会产生相互一致的结果(+ -150 K),该模型说明了从分子状态中去除了难熔物质,但不包括灰尘不透明性。我们发现RbI线有暗示温度略高的趋势,这归因于对上层分子不透明性的不完全处理。我们采用的最终有效温度仅基于CsI拟合,尽管RbI拟合支持CsI温度序列。这项工作与红外的结果相结合,暗示这些大气中的尘埃已经从高大气层中沉降出来,但存在于深光球中。我们还推导了所有物体的径向速度和旋转速度,发现先前发现的非常低质量物体的快速旋转趋势相当普遍。为了改善我们的分析,显然需要更好的分子线表,并且需要更详细地了解粉尘的形成和动力学。

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