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首页> 外文期刊>The Astrophysical journal >A CORRELATION BETWEEN PRE-MAIN-SEQUENCE STELLAR ROTATION RATES AND IRAC EXCESSES IN ORION
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A CORRELATION BETWEEN PRE-MAIN-SEQUENCE STELLAR ROTATION RATES AND IRAC EXCESSES IN ORION

机译:猎户座中主序恒星旋转率与IRAC过量之间的相关性

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Early observations of T Tauri stars suggested that stars with evidence of circumstellar accretion disks rotated slower than stars without such evidence, but more recent results are not as clear. Near-IR circumstellar disk indicators, although the most widely available, are subject to uncertainties that can result from inner disk holes and/or the system inclination. Mid-infrared observations are less sensitive to such effects, but until now, these observations have been difficult to obtain. The Spitzer Space Telescope now easily enables mid-infrared measurements of large samples of PMS stars covering a broad mass range in nearby star-forming regions. Megeath and collaborators surveyed the Orion Molecular Clouds (~1 Myr) with the IRAC instrument (3.6,4.5, 5.8, 8 μm) as part of a joint IRAC and MIPS GTO program. We examine the relationship between rotation and Spitzer mid-IR fluxes for ~900 stars in Orion for stars between 3 and 0.1 solar mass. We find in these Spitzer data the clearest indication to date that stars with longer periods are more likely than those with short periods to have IR excesses suggestive of disks.
机译:早期对T Tauri恒星的观测表明,有星际吸积盘证据的恒星比没有此类证据的恒星旋转得慢,但最近的结果尚不清楚。尽管近红外星际圆盘指示器尽管使用最广泛,但仍可能由于内部圆盘孔和/或系统倾斜而导致不确定性。中红外观测值对这种影响不太敏感,但是直到现在,这些观测值还是很难获得。 Spitzer太空望远镜现在可以轻松地对涵盖附近恒星形成区域质量范围较大的PMS恒星大样本进行中红外测量。 Megeath和合作者使用IRAC(3.6、4.5、5.8、8μm)作为IRAC和MIPS GTO联合计划的一部分,对Orion分子云(〜1 Myr)进行了调查。我们研究了太阳质量在3到0.1之间的猎户座中约900颗恒星的自旋和Spitzer中红外通量之间的关系。我们在这些Spitzer数据中找到了迄今为​​止最清楚的指示,即周期较长的恒星比周期较短的恒星更有可能出现IR超标提示盘。

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