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Titlebook: Galaxy Interactions at Low and High Redshift; Proceedings of the 1 J. E. Barnes,D. B. Sanders Conference proceedings 1999 Springer Science+

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书目名称Galaxy Interactions at Low and High Redshift
副标题Proceedings of the 1
编辑J. E. Barnes,D. B. Sanders
视频video
丛书名称International Astronomical Union Symposia
图书封面Titlebook: Galaxy Interactions at Low and High Redshift; Proceedings of the 1 J. E. Barnes,D. B. Sanders Conference proceedings 1999 Springer Science+
描述The 186th IAU Symposium came at an exciting and perhaps evenhistoric time for extragalactic astronomy. New spacecraft observationsplumbed the depths of the Universe out to redshifts of five, whilerevealing astounding details of nearby galaxies and AGN atintermediate redshifts. Theoretical ideas on structure formation,together with results from detailed numerical modeling, created acomprehensive framework for modeling the formation of galaxies and thetransformation of galaxies by interactions and mergers. All thesestrands came together at the Symposium, as participants glimpsed adeveloping synthesis highlighting galactic encounters and their rolein the history of the Universe. This volume offers professionalastronomers, including PhD students, an overview of the rapidlyadvancing subject of galaxy interactions at low and high redshifts.
出版日期Conference proceedings 1999
关键词Galaxy; Universe; active galactic nuclei; astronomy
版次1
doihttps://doi.org/10.1007/978-94-011-4665-4
isbn_softcover978-0-7923-5833-6
isbn_ebook978-94-011-4665-4Series ISSN 1743-9213 Series E-ISSN 2352-2186
issn_series 1743-9213
copyrightSpringer Science+Business Media Dordrecht 1999
The information of publication is updating

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What can we Learn From the Local Group About the Role of Interactions in Galaxy Formation,the role of interactions in galaxy formation. Bulges are potentially of particular interest for galaxy formation because they are widely suspected to be the seeds for galaxy formation. Sites of active star formation at high redshift are often regarded as spheroids in the process of formation. In thi
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The Magellanic Stream and The Magellanic Cloud System,eproduced the Magellanic Stream (Murai and Fujimoto 1980; Lin and Lynden-Bell 1982; Gardiner et al. 1994; Gardiner and Noguchi 1995; Lin et al. 1995), a narrow band of diffuse atomic hydrogen gas emerging from the SMC region, passing by the South Galactic Pole along an overhead great circle spanning
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The Nature and Fate of the Sagittarius Dwarf Galaxy,d into the Milky Way. This unique event allows the physics of galactic merging to be probed in unprecedented detail, and may shed light on the hypothesized population of primordial galaxies that merged to form the Milky Way.
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The Magellanic Stream Revisited,s in accordance with the Keplerian law at the distance of 50 kpc, while others have come to consider that the rotation curve of the Milky Way, essentially stays flat or is still increasing at the distance of the Magellanic Clouds and the Magellanic Stream.
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Are the Bulge C-Stars Related to the Sagittarius Dwarf Galaxy?,, are ideal tracers for such an event. Ng & Schultheis (1997) suggested that the Bulge carbon stars (Azzopardi et al. 1991; ALRW) might be at SDG’s distance. In the galactic Bulge these stars are completely different from carbon stars found in the LMC, SMC and dwarf spheroidal galaxies. If one keeps
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