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首页> 外文期刊>The Astrophysical journal >INTERGALACTIC STELLAR DISTRIBUTIONS IN THE INTERACTING M81/M82 GALAXY GROUP
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INTERGALACTIC STELLAR DISTRIBUTIONS IN THE INTERACTING M81/M82 GALAXY GROUP

机译:相互作用的M81 / M82星系中的星系星际分布

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摘要

Previous H I observations of the M81/M82/NGC 3077 galaxy group clearly show a widespread H I distribution within this galaxy group. While the gas is vulnerable to tidal disruption from a galaxy encounter, are there also stars embedded in this H I distribution? Our deep, 1 deg~2 exposures of the M81/M82 group in 10 optical bands using the Beijing-Arizona-Taipei-Connecticut (BATC) filter set clearly reveal widespread stellar distributions that coincide with the atomic hydrogen clouds—considered to be the relics of the merging process of the galaxies—splayed over the region. The spectral energy distributions of the stellar groups to the east and west of M81 (including the "Arp Loop") are similar to that measured at the southeast edge of the optical disk of M82. This similarity in stellar radiation, combined with the observed peculiar rotational velocity of M82, suggests that the diffuse stellar population in the intergalactic space around M81 is possibly a relic of the tidally disrupted disk of M82 during the last close encounter. Alternately, the stars could have formed in situ in the H I as it was drawn out of the galaxies. Recent measurements of distances to and radial velocities of M81 (3.63 Mpc and 48 km s~(-1), respectively) and M82 (3.9 Mpc and 296 km s~(-1)) lend further support to the notion of a close passage between these two galaxies several hundred million years ago.
机译:先前对M81 / M82 / NGC 3077星系组进行的H I观测清楚地表明,该银河系中存在广泛的H I分布。尽管气体很容易受到银河系遭遇潮汐的干扰,但这种H I分布中是否还嵌入了恒星?使用北京-亚利桑那-台北-康涅狄格州(BATC)滤光片组,我们在10个光学带中对M81 / M82组进行了1度〜2的深度曝光,清楚地揭示了与原子氢云一致的广泛恒星分布-被认为是遗迹星系合并过程的过程—在整个区域上展开。 M81东部和西部(包括“ Arp Loop”)的恒星组的光谱能量分布类似于在M82光盘东南边缘测得的光谱能量分布。恒星辐射的这种相似性,再加上观测到的M82独特的旋转速度,表明在M81附近星际空间中弥散的恒星种群可能是M82潮汐破裂盘的遗迹。或者,当恒星从银河系中抽出时,恒星可能在恒星中原位形成。最近对M81(分别为3.63 Mpc和48 km s〜(-1))和M82(3.9 Mpc和296 km s〜(-1))的距离和径向速度的测量进一步支持了近距离通道的概念在几亿年前的两个星系之间。

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