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Elliptical distortion of the Milky Way's rotation traced by high-mass star-forming regions

Elliptical distortion of the Milky Way's rotation traced by high-mass star-forming regions
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摘要 The gravitational potential of the Milky Way is non-axisymmetric, caused by a bar or triaxial halo, which dominates elliptical rotation of the Milky Way. Employing a likelihood analysis, we exploit the astrometric data of masers thoroughly and constrain the elliptical rotation of the Galaxy. Masers in high-mass star-forming regions, observed by VLBA, are more distant tracers than stars observed in the optical bandpass, and thus are more appropriate for studying the global feature of the Milky Way's rotation. A clear elliptical potential of the Milky Way is detected, with an ellipticity of ε0-0.09 at the Sun, and the ellipticity increases towards the outer disk. The minor axis of the elliptical potential (the major axis of the rotation orbit) is found to be near the Sun with a displacement of -32°. Based on the rotation model assumed for an elliptical potential, we also make a kinematical calibration of the Galactocentric distance of the Sun, which gives R0 = 7.63±0.34 kpc. The gravitational potential of the Milky Way is non-axisymmetric, caused by a bar or triaxial halo, which dominates elliptical rotation of the Milky Way. Employing a likelihood analysis, we exploit the astrometric data of masers thoroughly and constrain the elliptical rotation of the Galaxy. Masers in high-mass star-forming regions, observed by VLBA, are more distant tracers than stars observed in the optical bandpass, and thus are more appropriate for studying the global feature of the Milky Way's rotation. A clear elliptical potential of the Milky Way is detected, with an ellipticity of ε0-0.09 at the Sun, and the ellipticity increases towards the outer disk. The minor axis of the elliptical potential (the major axis of the rotation orbit) is found to be near the Sun with a displacement of -32°. Based on the rotation model assumed for an elliptical potential, we also make a kinematical calibration of the Galactocentric distance of the Sun, which gives R0 = 7.63±0.34 kpc.
出处 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2017年第11期85-94,共10页 天文和天体物理学研究(英文版)
基金 funded by the National Natural Science Foundation of China (NSFC) under grant Nos. 11303018 and 11473013 the Natural Science Foundation of Jiangsu Province under No. BK20130546
关键词 astrometry -- Galaxy: fundamental parameters -- Galaxy: kinematics and dynamics --methods: data analysis astrometry -- Galaxy: fundamental parameters -- Galaxy: kinematics and dynamics --methods: data analysis
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