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| − | An '''open cluster''', sometimes referred to as an '''open star cluster''' or a '''galactic cluster''', is a group of physically related [[star|stars]] that have similar chemical composition held together by mutual [[gravity]]. In contrast to a [[globular cluster|globular clusters]], the stars of an open cluster are only loosely gravitationally bound to each other. Open clusters have only been observed in galaxies with active star formation, such as [[spiral galaxy|spiral]] and [[irregular galaxy|irregular galaxies]], for spiral galaxies, they are found within the spiral arms.<ref>http://adsabs.harvard.edu/abs/1979stcl.book.....P</ref> These clusters are made up of [[metallicity|population I stars]]. Some clusters may still be contained in interstellar clouds, illuminating the clouds.<ref>http://adsabs.harvard.edu/abs/1962ApJ...136.1135J</ref> At current count, there are over 1,100 known open clusters in the [[Milky Way]] alone, although this may be only a small percentage of the total.<ref name="am">http://www.maa.clell.de/Messier/open.html</ref> | + | An '''open cluster''', sometimes referred to as an '''open star cluster''' or a '''galactic cluster''', is a group of physically related [[star]]s that have similar chemical composition held together by mutual [[gravity]]. In contrast to a [[globular cluster]]s, the stars of an open cluster are only loosely gravitationally bound to each other. Open clusters have only been observed in galaxies with active star formation, such as [[spiral galaxy|spiral]] and [[irregular galaxy|irregular galaxies]], for spiral galaxies, they are found within the spiral arms.<ref>http://adsabs.harvard.edu/abs/1979stcl.book.....P</ref> These clusters are made up of [[metallicity|population I stars]]. Some clusters may still be contained in interstellar clouds, illuminating the clouds.<ref>http://adsabs.harvard.edu/abs/1962ApJ...136.1135J</ref> At current count, there are over 1,100 known open clusters in the [[Milky Way]] alone, although this may be only a small percentage of the total.<ref name="am">http://www.maa.clell.de/Messier/open.html</ref> |
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| | The clusters themselves range from large conglomerates of thousands of stars to sparse clusters of only a dozen or less. The core or center of these clusters are a few light years across with an average density of a star per 1.5 cubic light years, about 500 times as dense as our solar neighborhood. | | The clusters themselves range from large conglomerates of thousands of stars to sparse clusters of only a dozen or less. The core or center of these clusters are a few light years across with an average density of a star per 1.5 cubic light years, about 500 times as dense as our solar neighborhood. |
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| | ==History of Observation== | | ==History of Observation== |
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| − | Open clusters have been known since [[antiquity]], although before the [[telescope]] the individual stars could not be resolved and they appeared as dim patches of light. One exception to this is the most well-known open cluster, the [[Pleiades]], which was easily observable as a group of similar stars, another known cluster was the [[Hyades]], the closest open cluster to us at only 150 [[light year|light years]]. | + | Open clusters have been known since [[antiquity]], although before the [[telescope]] the individual stars could not be resolved and they appeared as dim patches of light. One exception to this is the most well-known open cluster, the [[Pleiades]], which was easily observable as a group of similar stars, another known cluster was the [[Hyades]], the closest open cluster to us at only 150 [[light year]]s. |
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| − | Although there are various recording of the related stars of open clusters as far back as [[Ptolemy]] in 138 A.D, it wasn't until 1767 that the stars were recognized as such when [[Reverend]] [[John Michell]] first postulated that the stars of an open clusters had to be related because the chance of finding even one such cluster if they just happen to be a collection of unrelated stars were too astronomical.<ref name="am">http://www.maa.clell.de/Messier/open.html</ref> It wasn't until 1869 that the relation of stars in an open cluster was conclusively shown. That year Richard Proctor in his study of the Pleiades and the [[Ursa Major|Ursa Major Moving Cluster]], demonstrated using spectroscopy that the stars of the clusters have the same [[radial velocity]], indicating they are bound to each other by gravity. Proctor also showed that the stars of such clusters were all about the same distance from the [[Earth]], further showing they were moving together and were related.<ref>http://adsabs.harvard.edu/cgi-bin/bib_query?1869RSPS...18..169P</ref> | + | Although there are various recording of the related stars of open clusters as far back as [[Ptolemy]] in 138 A.D, it wasn't until 1767 that the stars were recognized as such when [[Reverend]] [[John Michell]] first postulated that the stars of an open clusters had to be related because the chance of finding even one such cluster if they just happen to be a collection of unrelated stars were too astronomical.<ref name="am"/> It wasn't until 1869 that the relation of stars in an open cluster was conclusively shown. That year Richard Proctor in his study of the Pleiades and the [[Ursa Major|Ursa Major Moving Cluster]], demonstrated using spectroscopy that the stars of the clusters have the same [[radial velocity]], indicating they are bound to each other by gravity. Proctor also showed that the stars of such clusters were all about the same distance from the [[Earth]], further showing they were moving together and were related.<ref>http://adsabs.harvard.edu/cgi-bin/bib_query?1869RSPS...18..169P</ref> |
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| | ==Classification== | | ==Classification== |
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| | *r - Cluster has over 100 stars, rich | | *r - Cluster has over 100 stars, rich |
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| − | If the cluster lies within a [[nebula|nebulous structure]] it's classification is appended with an 'n'. Under this classification method for example, the [[Pleiades]] is classified as '''I3rn''' (Strong concentration towards the center, richly populated with stars that have a wide range in brightness, with nebulous material present). <ref>http://adsabs.harvard.edu/cgi-bin/bib_query?1930LicOB.420..154T</ref> | + | If the cluster lies within a [[nebula|nebulous structure]] it's classification is appended with an 'n'. Under this classification method for example, the [[Pleiades]] is classified as '''I3rn''' (Strong concentration towards the center, richly populated with stars that have a wide range in brightness, with nebulous material present).<ref>http://adsabs.harvard.edu/cgi-bin/bib_query?1930LicOB.420..154T</ref> |
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| | [[Category:Astronomy]] | | [[Category:Astronomy]] |
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| − | {{Template:Stars}} | + | {{Stars}} |