首页> 外文期刊>The Astrophysical Journal. Letters >HST ROTATIONAL SPECTRAL MAPPING OF TWO L-TYPE BROWN DWARFS: VARIABILITY IN AND OUT OF WATER BANDS INDICATES HIGH-ALTITUDE HAZE LAYERS
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HST ROTATIONAL SPECTRAL MAPPING OF TWO L-TYPE BROWN DWARFS: VARIABILITY IN AND OUT OF WATER BANDS INDICATES HIGH-ALTITUDE HAZE LAYERS

机译:两个L型棕色矮星的HST旋转谱图:水带内外的变化指示高雾度层

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摘要

We present time-resolved near-infrared spectroscopy of two L5 dwarfs, 2MASS J18212815+1414010 and 2MASS J15074759-1627386, observed with the Wide Field Camera 3 instrument on the Hubble Space Telescope (HST). We study the wavelength dependence of rotation-modulated flux variations between 1.1 mu m and 1.7 mu m. We find that the water absorption bands of the two L5 dwarfs at 1.15 mu m and 1.4 mu m vary at similar amplitudes as the adjacent continuum. This differs from the results of previous HST observations of L/T transition dwarfs, in which the water absorption at 1.4 mu m displays variations of about half of the amplitude at other wavelengths. We find that the relative amplitude of flux variability out of the water band with respect to that in the water band shows a increasing trend from the L5 dwarfs toward the early T dwarfs. We utilize the models of Saumon & Marley and find that the observed variability of the L5 dwarfs can be explained by the presence of spatially varying high-altitude haze layers above the condensate clouds. Therefore, our observations show that the heterogeneity of haze layers-the driver of the variability-must be located at very low pressures, where even the water opacity is negligible. In the near future, the rotational spectral mapping technique could be utilized for other atomic and molecular species to probe different pressure levels in the atmospheres of brown dwarfs and exoplanets and uncover both horizontal and vertical cloud structures.
机译:我们用哈勃太空望远镜(HST)上的广角相机3仪器观测了两个L5矮星2MASS J18212815 + 1414010和2MASS J15074759-1627386的时间分辨近红外光谱。我们研究了1.1微米至1.7微米之间的旋转调制通量变化的波长依赖性。我们发现,两个L5矮星在1.15μm和1.4μm处的吸水带以与相邻连续体相似的幅度变化。这与以前的HST对L / T过渡矮星的观测结果不同,后者在1.4μm处的吸水率显示出在其他波长处振幅的一半左右的变化。我们发现,相对于水带而言,水带外通量变化的相对幅度显示出从L5矮体到早期T矮体的增加趋势。我们利用Saumon和Marley的模型,发现L5矮星的观测变异性可以由凝结云层上方空间变化的高空雾度层的存在来解释。因此,我们的观察结果表明,雾度层的异质性(变异性的驱动因素)必须位于非常低的压力下,在该压力下甚至水的不透明度也可以忽略不计。在不久的将来,旋转光谱映射技术可用于其他原子和分子种类,以探测褐矮星和系外行星大气中的不同压力水平,并揭示水平和垂直云结构。

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