强棒是否会产生强烈的非圆运动?

Taehyun Kim, Dimitri A. Gadotti, Yun Hee Lee, Carlos López-Cobá, Woong-Tae Kim, Minjin Kim and Myeong-gu Park
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摘要

银河系棒状结构会产生偏离纯圆周旋转的特征运动,即非圆运动。由于星条是非轴对称结构,因此较强的星条预计会表现出较强的非圆运动。然而,这一点尚未得到观测结果的证实。我们使用一个双对称模型来解释利用多单元光谱探测器获得的14个棒状星系的恒星运动学,并描述棒状星系驱动的非圆运动的程度。我们首次发现了棒状强度(棒状椭圆度和扭矩参数)与恒星非圆运动程度之间的紧密关系。我们还发现,条带强度与条带驱动的恒星径向速度密切相关。我们的结果表明,更强的棒状星体表现出更强的非圆运动。我们发现棒状运动之外的非圆运动很微弱,只占圆运动强度的不到 10%。我们发现,与没有B/P隆起的星系相比,具有箱状/花生状(B/P)隆起的星系表现出更高程度的非圆运动和更高的恒星径向速度(30% ∼ 50%)。不过,这种效应可能是由于我们的样本中具有B/P特征的星系中存在强棒,自然会导致更高的径向运动,而不是B/P隆起本身引起了更强的径向运动。要全面了解B/P隆起对棒状非圆运动的影响,还需要在统计上完整的样本上利用恒星和气体运动学进行更多的观测研究,以及数值研究。
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Do Strong Bars Exhibit Strong Noncircular Motions?
Galactic bars induce characteristic motions deviating from pure circular rotation, known as noncircular motions. As bars are nonaxisymmetric structures, stronger bars are expected to show stronger noncircular motions. However, this has not yet been confirmed by observations. We use a bisymmetric model to account for the stellar kinematics of 14 barred galaxies obtained with the Multi-Unit Spectroscopic Explorer and characterize the degree of bar-driven noncircular motions. For the first time, we find tight relations between the bar strength (bar ellipticity and torque parameter) and the degree of stellar noncircular motions. We also find that the bar strength is strongly associated with the stellar radial velocity driven by bars. Our results imply that stronger bars exhibit stronger noncircular motions. Noncircular motions beyond the bar are found to be weak, comprising less than 10% of the strength of the circular motions. We find that galaxies with a boxy/peanut (B/P) bulge exhibit a higher degree of noncircular motions and higher stellar radial velocity compared to galaxies without a B/P bulge, by 30% ∼ 50%. However, this effect could be attributed to the presence of strong bars in galaxies with a B/P feature in our sample, which would naturally result in higher radial motions, rather than to the B/P bulges themselves inducing stronger radial motions. More observational studies, utilizing both stellar and gaseous kinematics on statistically complete samples, along with numerical studies are necessary to draw a comprehensive view of the impact that B/P bulges have on bar-driven noncircular motions.
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