论文标题
在禁止的S0星系IC676中双核的性质
The Nature of the Double Nuclei in the Barred S0 Galaxy IC676
论文作者
论文摘要
凸耳星系IC 676是一个在中央区域中具有双核和活性恒星形成的禁止的星系。 In this work we present the long-slit spectroscopy and archival multi-wavelength images to investigate the nature and origin of the double nuclei in IC 676. Through photometric 1D brightness profiles and 2D image decomposition, we show that this galaxy consists of a stellar bar with the length of $\sim$ 2.5 kpc and two Sérsic disks both of which with Sérsic index $\it n \sim$ 1.3。 IC 676中可能几乎没有或没有凸起的成分。双核的亮度主要由1-10岁的MYR年龄段的年轻恒星种群主导。北部核具有比南部核具有更强的恒星形成活性。双核中恒星形成速率的表面密度与Starburst星系中的表面密度相似或螺旋星系中的周环形成区域。 IC 676中的每个双核都可能由年轻的大型星团组成,可以在HST高分辨率图像中作为明亮结的分辨。我们的结果表明,IC 676可能具有复杂的形成和进化史。由恒星棒和外部积聚驱动的世俗过程可能主导其双核的形成和演变。这表明涉及内部和外部驱动因素的世俗进化可能对凸耳星系的进化有重要贡献。
The lenticular galaxy IC 676 is a barred galaxy with double nuclei and active star formation in the central region. In this work we present the long-slit spectroscopy and archival multi-wavelength images to investigate the nature and origin of the double nuclei in IC 676. Through photometric 1D brightness profiles and 2D image decomposition, we show that this galaxy consists of a stellar bar with the length of $\sim$ 2.5 kpc and two Sérsic disks both of which with Sérsic index $\it n \sim$ 1.3. There is probably little or no bulge component assembled in IC 676. The luminosities of the double nuclei are primarily dominated by young stellar populations within the ages of 1-10 Myr. The northern nucleus has stronger star formation activity than the southern one. The surface densities of the star formation rate in the double nuclei are similar to those in starburst galaxies or the circumnuclear star forming regions in spiral galaxies. Each of the double nuclei in IC 676 likely consists of young massive star clusters, which can be resolved as bright knots in the HST high resolution image. Our results suggest that IC 676 likely has a complex formation and evolutionary history. The secular processes driven by the stellar bar and external accretion may dominate the formation and evolution of its double nuclei. This indicates that the secular evolution involving the internal and external drivers may have an important contribution for the evolution of lenticular galaxies.