期刊文献+

13 Galactic Star Clusters in Gaia DR3 Identified by An Improved FoF and UPMASK Hybrid Method Using MvC

在线阅读 下载PDF
导出
摘要 Open clusters(OCs)serve as invaluable tracers for investigating the properties and evolution of stars and galaxies.Despite recent advancements in machine learning clustering algorithms,accurately discerning such clusters remains challenging.We re-visited the 3013 samples generated with a hybrid clustering algorithm of FoF and pyUPMASK.A multi-view clustering(MvC)ensemble method was applied,which analyzes each member star of the OC from three perspectives—proper motion,spatial position,and composite views—before integrating the clustering outcomes to deduce more reliable cluster memberships.Based on the MvC results,we further excluded cluster candidates with fewer than ten member stars and obtained 1256 OC candidates.After isochrone fitting and visual inspection,we identified 506 candidate OCs in the Milky Way.In addition to the 493 previously reported candidates,we finally discovered 13 high-confidence new candidate clusters.
出处 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2024年第11期243-258,共16页 天文和天体物理学研究(英文版)
基金 supported by the National Key Research And Development Program of China(No.2022YFF0711500) the National Natural Science Foundation of China(NSFC,Grant No.12373097) the Basic and Applied Basic Research Foundation Project of Guangdong Province(No.2024A1515011503) the Guangzhou Science and Technology Funds(2023A03J0016)。
  • 相关文献
  • 1LHAASO Collaboration,Zhen Cao,F.Aharonian,Axikegu,Y.X.Bai,Y.W.Bao,D.Bastieri,X.J.Bi,Y.J.Bi,W.Bian,A.V.Bukevich,Q.Cao,W.Y.Cao,Zhe Cao,J.Chang,J.F.Chang,A.M.Chen,E.S.Chen,H.X.Chen,Liang Chen,Lin Chen,Long Chen,M.J.Chen,M.L.Chen,Q.H.Chen,S.Chen,S.H.Chen,S.Z.Chen,T.L.Chen,Y.Chen,N.Cheng,Y.D.Cheng,M.Y.Cui,S.W.Cui,X.H.Cui,Y.D.Cui,B.Z.Dai,H.L.Dai,Z.G.Dai,Danzengluobu,X.Q.Dong,K.K.Duan,J.H.Fan,Y.Z.Fan,J.Fang,J.H.Fang,K.Fang,C.F.Feng,H.Feng,L.Feng,S.H.Feng,X.T.Feng,Y.Feng,Y.L.Feng,S.Gabici,B.Gao,C.D.Gao,Q.Gao,W.Gao,W.K.Gao,M.M.Ge,L.S.Geng,G.Giacinti,G.H.Gong,Q.B.Gou,M.H.Gu,F.L.Guo,X.L.Guo,Y.Q.Guo,Y.Y.Guo,Y.A.Han,M.Hasan,H.H.He,H.N.He,J.Y.He,Y.He,Y.K.Hor,B.W.Hou,C.Hou,X.Hou,H.B.Hu,Q.Hu,S.C.Hu,D.H.Huang,T.Q.Huang,W.J.Huang,X.T.Huang,X.Y.Huang,Y.Huang,X.L.Ji,H.Y.Jia,K.Jia,K.Jiang,X.W.Jiang,Z.J.Jiang,M.Jin,M.M.Kang,I.Karpikov,D.Kuleshov,K.Kurinov,B.B.Li,C.M.Li,Cheng Li,Cong Li,D.Li,F.Li,H.B.Li,H.C.Li,Jian Li,Jie Li,K.Li,S.D.Li,W.L.Li,W.L.Li,X.R.Li,Xin Li,Y.Z.Li,Zhe Li,Zhuo Li,E.W.Liang,Y.F.Liang,S.J.Lin,B.Liu,C.Liu,D.Liu,D.B.Liu,H.Liu,H.D.Liu,J.Liu,J.L.Liu,M.Y.Liu,R.Y.Liu,S.M.Liu,W.Liu,Y.Liu,Y.N.Liu,Q.Luo,Y.Luo,H.K.Lv,B.Q.Ma,L.L.Ma,X.H.Ma,J.R.Mao,Z.Min,W.Mitthumsiri,H.J.Mu,Y.C.Nan,A.Neronov,L.J.Ou,P.Pattarakijwanich,Z.Y.Pei,J.C.Qi,M.Y.Qi,B.Q.Qiao,J.J.Qin,A.Raza,D.Ruffolo,A.Sáiz,M.Saeed,D.Semikoz,L.Shao,O.Shchegolev,X.D.Sheng,F.W.Shu,H.C.Song,Yu.V.Stenkin,V.Stepanov,Y.Su,D.X.Sun,Q.N.Sun,X.N.Sun,Z.B.Sun,J.Takata,P.H.T.Tam,Q.W.Tang,R.Tang,Z.B.Tang,W.W.Tian,C.Wang,C.B.Wang,G.W.Wang,H.G.Wang,H.H.Wang,J.C.Wang,Kai Wang,Kai Wang,L.P.Wang,L.Y.Wang,P.H.Wang,R.Wang,W.Wang,X.G.Wang,X.Y.Wang,Y.Wang,Y.D.Wang,Y.J.Wang,Z.H.Wang,Z.X.Wang,Zhen Wang,Zheng Wang,D.M.Wei,J.J.Wei,Y.J.Wei,T.Wen,C.Y.Wu,H.R.Wu,Q.W.Wu,S.Wu,X.F.Wu,Y.S.Wu,S.Q.Xi,J.Xia,G.M.Xiang,D.X.Xiao,G.Xiao,Y.L.Xin,Y.Xing,D.R.Xiong,Z.Xiong,D.L.Xu,R.F.Xu,R.X.Xu,W.L.Xu,L.Xue,D.H.Yan,J.Z.Yan,T.Yan,C.W.Yang,C.Y.Yang,F.Yang,F.F.Yang,L.L.Yang,M.J.Yang,R.Z.Yang,W.X.Yang,Y.H.Yao,Z.G.Yao,L.Q.Yin,N.Yin,X.H.You,Z.Y.You,Y.H.Yu,Q.Yuan,H.Yue,H.D.Zeng,T.X.Zeng,W.Zeng,M.Zha,B.B.Zhang,F.Zhang,H.Zhang,H.M.Zhang,H.Y.Zhang,J.L.Zhang,Li Zhang,P.F.Zhang,P.P.Zhang,R.Zhang,S.B.Zhang,S.R.Zhang,S.S.Zhang,X.Zhang,X.P.Zhang,Y.F.Zhang,Yi Zhang,Yong Zhang,B.Zhao,J.Zhao,L.Zhao,L.Z.Zhao,S.P.Zhao,X.H.Zhao,F.Zheng,W.J.Zhong,B.Zhou,H.Zhou,J.N.Zhou,M.Zhou,P.Zhou,R.Zhou,X.X.Zhou,X.X.Zhou,B.Y.Zhu,C.G.Zhu,F.R.Zhu,H.Zhu,K.J.Zhu,Y.C.Zou,X.Zuo,S.Celli.Evidence for particle acceleration approaching PeV energies in the W51 complex[J].Science Bulletin,2024,69(18):2833-2841.
  • 2Wei Zeng,Xiao-Na Sun,Rui-Zhi Yang,Jia-Chun He,Zhao-Dong Shi,Ting-Ting Ge,Yun-Feng Liang,En-Wei Liang.Revisit of GeV Gamma-Ray Emission from Orion B with the Fermi Large Area Telescope[J].Research in Astronomy and Astrophysics,2024,24(9):128-135.
  • 3闫明远.“元宇宙”概念对游戏产业经济战略的重塑与挑战[J].经济与管理战略研究,2024(2):45-48.
  • 4刘凯,王佳鑫,毛谦昂,陈煜菲,颜嘉麒.区块链游戏生态的角色动态识别与演化分析——以Axie Infinity为例[J].应用科学学报,2024,42(4):642-658.
  • 5孟珞珈,郭元兴,刘皓.数字专网的通信终端与加密组件测试系统设计[J].计算机测量与控制,2024,32(8):78-85. 被引量:1
  • 6Yingjie Li,Ye Xu,Jingjing Li,Shuaibo Bian,Zehao Lin,Chaojie Hao,Dejian Liu.VLBI with SKA:Possible Arrays and Astrometric Science[J].Research in Astronomy and Astrophysics,2024,24(7):1-33.
  • 7Zhengkun Chen,Ryohichi Sugimura,Yu Shrike Zhang,Changshun Ruan,Chunyi Wen.Organoids in concert:engineering in vitro models toward enhanced fidelity[J].Aggregate,2024,5(2):99-111.
  • 8庹满先,杨江河,张月莲,汪胜辉,聂建军,樊军辉.耀变体的逆康普顿峰值频率与伽马光子谱指数的关系[J].天文学报,2024,65(6):32-39.
  • 9Manuel Abarca.A Dark Matter Theory by Quantum Gravitation for Galaxies and Clusters[J].Journal of High Energy Physics, Gravitation and Cosmology,2024,10(4):1749-1784.
  • 10李振宇,何碧竹,贠晓瑞,蔡志慧,张盛生,刘若涵,马绪宣,陈希节.共和盆地东北部花岗岩型干热岩井下裂缝系统及其构造成因[J].岩石学报,2024,40(12):3964-3983.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部