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首页> 外文期刊>The Astrophysical journal >WHEELS OF FIRE. I. MASSIVE STAR FORMATION IN THE CARTWHEEL RING GALAXY
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WHEELS OF FIRE. I. MASSIVE STAR FORMATION IN THE CARTWHEEL RING GALAXY

机译:火轮。 I.车轮环银河系中的恒星形成

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Hα CCD imaging is used to map the distribution and intensity of massive star formation (MSF) in the Cartwheel ring galaxy. Line emission is restricted to the outer ring, with upper limits comparable to the disks of early-type galaxies found in the spokes, disk, inner ring, and nucleus. Systematic variations in Hα surface brightness are detected around the ring, with 80% of the total line luminosity (L_(Hα) = 7.4 x 10~(42) ergs s~(-1), corrected for A_v = 2.1) originating in one quadrant. The 29 identified H II region complexes of the ring are characterized by very large Ha luminosities and equivalent widths. In contrast to Hα, the outer ring is faint in red continuum and shows only small azimuthal variations in surface brightness. The systematic variation in line emission around the ring, high star formation rates, and low H II region abundances are evidence that the ring acts to both organize the interstellar medium and directly trigger MSF. Faint H II region complexes are found in advance of the outer ring and appear to be spawned by shocks and supernovae from nearby giant H II regions. The overall distribution of MSF points to a small impact parameter collision with one of the three companion galaxies. The lack of Hα emission from the Cartwheel's inner ring and spokes suggests that they are gas poor. The observed azimuthal variations in L_(Hα) and EW_(Hα) in the outer ring are most simply explained by systematic changes in age or initial mass function.
机译:HαCCD成像用于绘制车轮环星系中大质量恒星形成(MSF)的分布和强度。线辐射仅限于外圈,其上限与辐条,圆盘,内圈和核中发现的早期星系的圆盘相当。在圆环周围检测到Hα表面亮度的系统变化,其中总线度的80%(L_(Hα)= 7.4 x 10〜(42)ergs s〜(-1),针对A_v = 2.1校正)象限。环的29个确定的H II区络合物的特征是非常大的Ha发光度和等效宽度。与Hα相比,外环在红色连续区域中微弱,并且表面亮度仅显示出很小的方位角变化。环周围的线发射,高的恒星形成率和低的H II区域丰度的系统变化证明了该环既可以组织星际介质,又可以直接触发MSF。在外圈之前发现了昏暗的H II区复合物,似乎是由附近巨型H II区的冲击和超新星产生的。 MSF的总体分布指向与三个伴随星系之一发生小的碰撞参数碰撞。车轮内圈和轮辐缺乏Hα排放,表明它们的气体不足。在外圈中观察到的L_(Hα)和EW_(Hα)的方位角变化最容易通过年龄或初始质量函数的系统变化来解释。

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