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New Massive Contact Twin Binary in a Radio-quiet HⅡ Region Associated with the M17 Complex

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【作者】 尹佳陈志维姚永强陈健李彬江治波

【Author】 Jia Yin;Zhiwei Chen;Yongqiang Yao;Jian Chen;Bin Li;Zhibo Jiang;National Astronomical Observatories, Chinese Academy of Sciences;University of Chinese Academy of Sciences;Purple Mountain Observatory, Chinese Academy of Sciences;School of Astronomy and Space Science, University of Science and Technology of China;

【机构】 National Astronomical Observatories, Chinese Academy of SciencesUniversity of Chinese Academy of SciencesPurple Mountain Observatory, Chinese Academy of SciencesSchool of Astronomy and Space Science, University of Science and Technology of China

【摘要】 Early-B stars, much less energetic than O stars, may create an H Ⅱ region that appears as radio-quiet. We report the identification of new early-B stars associated with the radio-quiet H Ⅱ region G014.645–00.606 in the M17 complex. The radio-quiet H Ⅱ region G014.645–00.606 is adjacent to three radio-quiet WISE H Ⅱ region candidates. The ionizing sources of the radio-quiet H Ⅱ regions are expected to be later than B1 V, given the sensitivity about 1–2 m Jy of the MAGPIS 20 cm survey. The stars were first selected if their parallaxes of Gaia EDR3 match that of the 22 GHz H2 O maser source within the same region. We used the color–magnitude diagram made from the Zwicky Transient Facility photometric catalog to select the candidates for massive stars because the intrinsic g-r colors of massive stars change little from B-type to O-type stars. Five stars lie in the areas of the color–magnitude diagram where either reddened massive stars or evolved post-main sequence stars of lower masses are commonly found. Three of the five stars, sources 1, 2, and 3, are located at the cavities of the three IR bubbles, and extended Hα emission is detected around the three IR bubbles. We suggest that sources 1, 2, and 3 are candidates for early-B stars associated with the radio-quiet region G014.645–00.606. Particularly, source 1 is an EW type eclipsing binary with a short period of 0.825 day, while source 2 is an EA type eclipsing binary with a short period of 0.919 day. The physical parameters of the two binary systems have been derived through the PHOEBE model. Source 1 is a twin binary of two stars with Teff≈ 23,500 K, and source 2 contains a hotter component(Teff≈ 20,100 K) and a cooler one(Teff≈ 15,500 K). The O-C values of source 1 show a trend of decline, implying that the period of the source is deceasing. Source 1 is likely a contact early-B twin binary, for which mass transfer might cause its orbit to shrink.

【Abstract】 Early-B stars, much less energetic than O stars, may create an H Ⅱ region that appears as radio-quiet. We report the identification of new early-B stars associated with the radio-quiet H Ⅱ region G014.645–00.606 in the M17 complex. The radio-quiet H Ⅱ region G014.645–00.606 is adjacent to three radio-quiet WISE H Ⅱ region candidates. The ionizing sources of the radio-quiet H Ⅱ regions are expected to be later than B1 V, given the sensitivity about 1–2 m Jy of the MAGPIS 20 cm survey. The stars were first selected if their parallaxes of Gaia EDR3 match that of the 22 GHz H2 O maser source within the same region. We used the color–magnitude diagram made from the Zwicky Transient Facility photometric catalog to select the candidates for massive stars because the intrinsic g-r colors of massive stars change little from B-type to O-type stars. Five stars lie in the areas of the color–magnitude diagram where either reddened massive stars or evolved post-main sequence stars of lower masses are commonly found. Three of the five stars, sources 1, 2, and 3, are located at the cavities of the three IR bubbles, and extended Hα emission is detected around the three IR bubbles. We suggest that sources 1, 2, and 3 are candidates for early-B stars associated with the radio-quiet region G014.645–00.606. Particularly, source 1 is an EW type eclipsing binary with a short period of 0.825 day, while source 2 is an EA type eclipsing binary with a short period of 0.919 day. The physical parameters of the two binary systems have been derived through the PHOEBE model. Source 1 is a twin binary of two stars with Teff≈ 23,500 K, and source 2 contains a hotter component(Teff≈ 20,100 K) and a cooler one(Teff≈ 15,500 K). The O-C values of source 1 show a trend of decline, implying that the period of the source is deceasing. Source 1 is likely a contact early-B twin binary, for which mass transfer might cause its orbit to shrink.

【基金】 supported by National Key Research & Development Program of China (2017YFA0402702);the science research grants from the China Manned Space Project with No. CMS-CSST-2021-B06;support from the general grants U2031202, 11903083 and 11973004 of the National Natural Science Foundation of China;Funding for the DPAC has been provided by national institutions, in particular the institutions participating in the Gaia Multilateral Agreement
  • 【文献出处】 Research in Astronomy and Astrophysics ,天文和天体物理学研究(英文版) , 编辑部邮箱 ,2022年03期
  • 【分类号】P153
  • 【下载频次】20
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