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Kinematic Mass Measurements of Inner andOuter Spiral Disks

机译:内外螺旋盘的运动量测量

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We have been using planetary nebulae (PNe) to probe the kinematic structure of face-on spiral disks by identifying large (-100) samples of these objects via narrow-band imaging, and then measuring their radial velocities with follow-up, high-precision (5 kms~(-1)) spectroscopy. Our results for IC 342, M74, M83, M94, and M101 are quite interesting. With one exception (M101) the z-velocity dispersion (σ_z) of galactic disks declines exponentially with the light out to —3 disk scale lengths. This is as expected for a constant M/L, constant scale height disk. However, in two galaxies with significant data past this radius, the values of σ_z asymptote out at 20 km s~(-1). Moreover, our analysis finds kinematic evidence for significant flaring in the outer regions as well, especially in M94. These observations are in excellent agreement with predictions derived from models of disk accretion of subhalos, and demonstrate how kinematic surveys in the outer disks of spirals can be used to test hierarchical models of galaxy formation. We also find that the disks of late-type galaxies are far from maximal, that the disks of early-type spirals have higher M/L ratios than the disks of later-type objects, and that the unseen inner halos of spiral galaxies are better fit by pseudo-isothermal laws than by NFW models.
机译:我们一直在使用行星星云(PNE)来探测通过窄带成像识别这些物体的大(-100)样品,然后用随访测量它们的径向速度,高 - 高)探测面对螺旋盘的运动结构。精度(5公斤〜(-1))光谱。我们的IC 342,M74,M83,M94和M101的结果非常有趣。使用一个例外(M101)Galactic磁盘的Z速度分散(Σ_Z)随着-3磁盘刻度长度的光线指数下降。这与常数M / L,恒定刻度高度磁盘预期。然而,在两个具有这一半径的具有重要数据的星系中,Σ_Z渐近的值为20km S〜(-1)。此外,我们的分析也发现了外部区域的显着燃烧的运动证据,特别是在M94中。这些观察结果与源自Subhalos的磁盘吸收模型的预测结果非常一致,并证明了螺旋形外壳中的运动学调查是如何使用Galaxy形成的等级模型。我们还发现,后期星系的磁盘远非最大,即早期螺旋的磁盘比以后型对象的圆盘更高的m / l比,并且螺旋星系的看不见的内晕较好由伪等温法律而不是NFW模型。

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