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Observations of Binary Stars with the Differential Speckle Survey Instrument. IX. Observations of Known and Suspected Binaries, and a Partial Survey of Be Stars

机译:用差分散斑测量仪器观察二元恒星。 IX。观察众所周知和疑似二进制文件,以及对星星的部分调查

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摘要

We report 370 measures of 170 components of binary and multiple-star systems, obtained from speckle imaging observations made with the Differential Speckle Survey Instrument at Lowell Observatory's Discovery Channel Telescope in 2015 through 2017.Of the systems studied, 147 are binary stars, 10 are seen as triple systems, and 1 quadruple system is measured.Seventy-six high-quality nondetections and 15 newly resolved components are presented in our observations.The uncertainty in relative astrometry appears to be similar to our previous work at Lowell, namely, linear measurement uncertainties of approximately 2 mas, and the relative photometry appears to be uncertain at the 0.1–0.15 mag level.Using these measures and those in the literature, we calculate six new visual orbits, including one for the Be star 66 Oph and two combined spectroscopic–visual orbits.The latter two orbits, which are for HD 22451 (YSC 127) and HD 185501 (YSC 135), yield individual masses of the components at the level of 2% or better, and independent distance measures that in one case agrees with the value found in the Gaia DR2 and in the other disagrees at the 2σ level.We find that HD 22451 consists of an F6V+F7V pair with orbital period of 2401.1 ± 3.2 days and masses of 1.342 ± 0.029 and $1.236pm 0.026,{M}_{odot }$.For HD 185501, both stars are G5 dwarfs that orbit one another with a period of 433.94 ± 0.15 days, and the masses are 0.898 ± 0.012 and $0.876pm 0.012,{M}_{odot }$.We discuss the details of both the new discoveries and the orbit objects.
机译:我们报告了370个二元组成部分的二元组件和多星级系统,从2015年到2017年通过洛厄尔天文台发现渠道望远镜的差异散斑调查仪器制作的散斑成像观察,从2015年到2017年。学习系统,147是二进制星,10是被视为三重系统,测量了1个四倍系统。我们观察中提出了六个高质量的非质谱和15个新分辨的组件。相对天体学的不确定性似乎与我们之前的洛厄尔的工作相似,即线性测量相似大约2 mas的不确定性,相对测光似乎在0.1-0.15 mag水平上不确定。这些措施和文献中的措施,我们计算六个新的视觉轨道,包括一个用于恒星66 OPH和两个组合光谱的新视觉轨道 - 用于HD 22451(YSC 127)和HD 185501(YSC 135)的后两个轨道,在L处产生各个质量的部件evel为2%或更高,而且独立的距离测量在一个情况下,在一个情况下同意,在盖亚DR2中发现的价值和2σ级别的其他不同意。我们发现HD 22451包括与轨道周期的F6V + F7V对组成2401.1±3.2天和肿块为1.342±0.029和1.236 PM 0.026 ,{M} _ { oadt} $。对于HD 185501,这两颗星都是G5矮人,彼此绕过彼此的时期为433.94±0.15天,以及群众的0.898±0.012和0.876 PM 0.012 ,{M} _ { oadtOT} $。我们讨论了新发现和轨道对象的细节。
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