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Photometric Accretion Signatures Near the Substellar Boundary

机译:星际边界附近的光度增生签名

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Multiepoch imaging of the Orion equatorial region by the Sloan Digital Sky Survey has revealed that significant variability in the blue continuum persists into the late-M spectral types, indicating that magnetospheric accretion processes occur below the substellar boundary in the Orion OB1 association. We investigate the strength of the accretion-related continuum veiling by comparing the reddening-invariant colors of the most highly variable stars against those of main-sequence M dwarfs and evolutionary models. A gradual decrease in the g-band veiling is seen for the cooler and less massive members, as expected for a declining accretion rate with decreasing mass. We also see evidence that the temperature of the accretion shock decreases in the very low mass regime, reflecting a reduction in the energy flux carried by the accretion columns. We find that the near-IR excess attributed to circumstellar disk thermal emission drops rapidly for spectral types later than M4. This is likely due to the decrease in color contrast between the disk and the cooler stellar photosphere. Since accretion, which requires a substantial stellar magnetic field and the presence of a circumstellar disk, is inferred for masses down to 0.05 M⊙, we surmise that brown dwarfs and low-mass stars share a common mode of formation.
机译:Sloan Digital Sky Survey对猎户座赤道地区进行的多纪成像显示,蓝色连续体的显着变化一直持续到M晚频谱类型,这表明在猎户座OB1关联的星下边界以下发生了磁层吸积过程。我们通过比较变化最大的恒星与主序列M矮星和演化模型的变红不变色来研究与增生有关的连续面纱的强度。对于较冷和较不重的成员,可以看到g带面纱逐渐减少,这是因为随着质量的降低,吸积率下降。我们还看到有证据表明,在非常低的质量范围内,吸积激波的温度会降低,这反映出吸积柱所承载的能量通量减少了。我们发现,对于晚于M4的光谱类型,归因于星际盘热发射的近红外过量迅速下降。这可能是由于磁盘和较冷的恒星光球之间的颜色对比度降低所致。由于推断出质量低至0.05M⊙的积聚需要大量的恒星磁场和存在的星际盘,因此我们推测褐矮星和低质量恒星具有共同的形成方式。

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