论文标题

使用紫外线了解NGC 628的世俗演化

Understanding the secular evolution of NGC 628 using UVIT

论文作者

Ujjwal, K., Kartha, Sreeja S., Subramanian, Smitha, George, Koshy, Thomas, Robin, Mathew, Blesson

论文摘要

世俗和环境效应在调节星形的恒星形成速率中起着重要作用,从而导致星系的演变。由于紫外线是星系中恒星形成的直接示踪剂,因此在板载Astrosat上的紫外成像望远镜(UVIT)使我们能够以其显着的空间分辨率来表征星系中星系中的恒星形成区域。在这项研究中,我们关注NGC 628的世俗演化,NGC 628是当地宇宙中的螺旋星系。我们利用紫外线的分辨率在NGC 628中最多解决$ \ sim $ 63 PC来识别和表征恒星形成区域。我们使用starburst99模型来表征NGC 628的紫外线FUV图像中的300颗恒星形成区域。星系中恒星形成区域的年龄和质量分布支持磁盘的内部生长。我们发现NGC 628的两个臂之间的恒星形成性质没有显着差异。我们还量化了不同年龄的恒星形成区域的方位角偏移。 Since we do not find an age gradient, we suggest that the spiral density waves might not be the possible formation scenario of the spiral arms of NGC 628. The headlight cloud present in the disk of the galaxy is found to be having the highest star formation rate density ($0.23 M_{\odot} yr^{-1} kpc^{-2}$) compared to other star forming regions on spiral武器和其他银河系。

Secular and environmental effects play a significant role in regulating the star formation rate and hence the evolution of the galaxies. Since UV flux is a direct tracer of the star formation in galaxies, the UltraViolet Imaging Telescope (UVIT) onboard ASTROSAT enables us to characterize the star forming regions in a galaxy with its remarkable spatial resolution. In this study, we focus on the secular evolution of NGC 628, a spiral galaxy in the local universe. We exploit the resolution of UVIT to resolve up to $\sim$ 63 pc in NGC 628 for identification and characterization of the star forming regions. We identify 300 star forming regions in the UVIT FUV image of NGC 628 using ProFound and the identified regions are characterized using Starburst99 models. The age and mass distribution of the star forming regions across the galaxy supports the inside-out growth of the disk. We find that there is no significant difference in the star formation properties between the two arms of NGC 628. We also quantify the azimuthal offset of the star forming regions of different ages. Since we do not find an age gradient, we suggest that the spiral density waves might not be the possible formation scenario of the spiral arms of NGC 628. The headlight cloud present in the disk of the galaxy is found to be having the highest star formation rate density ($0.23 M_{\odot} yr^{-1} kpc^{-2}$) compared to other star forming regions on spiral arms and the rest of the galaxy.

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