论文标题
潮汐引起的外部盘状星系中的全球波纹模式类似于银河系
A tidally induced global corrugation pattern in an external disc galaxy similar to the Milky Way
论文作者
论文摘要
我们研究了低压型,晚期型Galaxy VV304A的二维(2D)视线速度($ v _ {\ rm los} $)。由此产生的2D运动图揭示了全球,相干和扩展的扰动,这可能与最近与大型伴侣VV304B的相互作用有关。我们使用多波段成像和一套测试粒子模拟来量化由于非轴对称扰动而导致的平面流的合理强度,并表明观察到的速度流太大而无法由螺旋结构或杆驱动。我们使用完全宇宙学的流体动力学模拟来表征来自$ V _ {\ rm los} $ FIELD最近相互作用的星系对(如VVV04系统)的$ V _ {\ rm los} $场的贡献。我们表明,对于最近扰动的低聚银盘盘,在轴对称旋转模型减去后,残留速度场的结构可以由垂直流动主导。我们的结果表明,VV304A中的$ v _ {\ rm los} $扰动与波纹模式一致。它的$ v _ {\ rm los} $映射表明存在类似于以银河系的monoceros环的存在。我们的研究强调了通过测量附近星系中低聚的视线速度来解决有关垂直扰动性质和起源的重要问题的可能性。
We study the two dimensional (2D) line-of-sight velocity ($V_{\rm los}$) field of the low-inclination, late-type galaxy VV304a. The resulting 2D kinematic map reveals a global, coherent and extended perturbation that is likely associated with a recent interaction with the massive companion VV304b. We use multi-band imaging and a suite of test particle simulations to quantify the plausible strength of in-plane flows due to non-axisymmetric perturbations and show that the observed velocity flows are much too large to be driven either by spiral structure nor by a bar. We use fully cosmological hydrodynamical simulations to characterize the contribution from in- and off-plane velocity flows to the $V_{\rm los}$ field of recently interacting galaxy pairs like the VV304 system. We show that, for recently perturbed low-inclination galactic discs, the structure of the residual velocity field, after subtraction of an axisymmetric rotation model, can be dominated by vertical flows. Our results indicate that the $V_{\rm los}$ perturbations in VV304a are consistent with a corrugation pattern. Its $V_{\rm los}$ map suggests the presence of a structure similar to the Monoceros ring seen in the Milky Way. Our study highlights the possibility of addressing important questions regarding the nature and origin of vertical perturbations by measuring the line-of-sight velocities in low-inclination nearby galaxies.