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The First Hundred Brown Dwarfs Discovered by the Wide-field Infrared Survey Explorer (WISE)

机译:宽视野红外测量浏览器(WISE)发现的第一批一百只棕色矮星

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摘要

We present ground-based spectroscopic verification of 6 Y dwarfs (see also Cushing et al.), 89 T dwarfs, 8 L dwarfs, and 1 M dwarf identified by the Wide-field Infrared Survey Explorer (WISE). Eighty of these are cold brown dwarfs with spectral types ≥T6, six of which have been announced earlier by Mainzer et al. and Burgasser et al. We present color-color and color-type diagrams showing the locus of M, L, T, and Y dwarfs in WISE color space. Near-infrared and, in a few cases, optical spectra are presented for these discoveries. Near-infrared classifications as late as early Y are presented and objects with peculiar spectra are discussed. Using these new discoveries, we are also able to extend the optical T dwarf classification scheme from T8 to T9. After deriving an absolute WISE 4.6 μm (W2) magnitude versus spectral type relation, we estimate spectrophotometric distances to our discoveries. We also use available astrometric measurements to provide preliminary trigonometric parallaxes to four of our discoveries, which have types of L9 pec (red), T8, T9, and Y0; all of these lie within 10 pc of the Sun. The Y0 dwarf, WISE 1541–2250, is the closest at 2.8^(+1.3)_(–0.6) pc; if this 2.8 pc value persists after continued monitoring, WISE 1541–2250 will become the seventh closest stellar system to the Sun. Another 10 objects, with types between T6 and >Y0, have spectrophotometric distance estimates also placing them within 10 pc. The closest of these, the T6 dwarf WISE 1506+7027, is believed to fall at a distance of ~4.9 pc. WISE multi-epoch positions supplemented with positional info primarily from the Spitzer/Infrared Array Camera allow us to calculate proper motions and tangential velocities for roughly one-half of the new discoveries. This work represents the first step by WISE to complete a full-sky, volume-limited census of late-T and Y dwarfs. Using early results from this census, we present preliminary, lower limits to the space density of these objects and discuss constraints on both the functional form of the mass function and the low-mass limit of star formation.
机译:我们提出了6个Y矮星(另请参见Cushing等人)的地面光谱验证,这是由宽视场红外测量浏览器(WISE)识别出的89个T矮星,8 L矮星和1 M矮星。其中有八十个是光谱类型≥T6的冷棕矮星,其中六个由Mainzer等人早些时候宣布。和Burgasser等。我们提供了彩色-彩色和彩色类型图,显示了WISE颜色空间中M,L,T和Y矮星的位置。针对这些发现提出了近红外光谱,在少数情况下还提供了光谱。提出了直到Y早期的近红外分类,并讨论了具有特殊光谱的物体。利用这些新发现,我们还能够将光学T矮分类方案从T8扩展到T9。在得出绝对WISE 4.6μm(W2)幅度与光谱类型的关系后,我们估计到发现的分光光度距离。我们还使用可用的天文测量为我们的四个发现提供初步的三角视差,它们的类型分别为L9 pec(红色),T8,T9和Y0。所有这些都在距离太阳10%的范围内。 Y0矮星WISE 1541–2250最接近2.8 ^(+ 1.3)_(– 0.6)pc;如果在继续监视后该2.8 pc值仍然存在,则WISE 1541–2250将成为距离太阳最近的第七个恒星系统。 T10和> Y0之间类型的另外10个对象具有分光光度距离估计,并将它们放置在10 pc之内。其中最接近的是T6矮WISE 1506 + 7027,据信坠落的距离约为4.9 pc。 WISE多历元位置补充了主要来自Spitzer /红外阵列摄像机的位置信息,使我们能够为大约一半的新发现计算出正确的运动和切线速度。这项工作代表WISE迈出第一步,完成对T型和Y型矮人的全天候,数量有限的普查。利用这次人口普查的早期结果,我们为这些物体的空间密度提出了初步的下限,并讨论了对质量函数的功能形式和恒星形成的低质量极限的限制。

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