首页> 外文期刊>The Astrophysical journal >SEPARATED FRINGE PACKET OBSERVATIONS WITH THE CHARA ARRAY. I. METHODS AND NEW ORBITS FOR χ DRACONIS, HD 184467, AND HD 198084
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SEPARATED FRINGE PACKET OBSERVATIONS WITH THE CHARA ARRAY. I. METHODS AND NEW ORBITS FOR χ DRACONIS, HD 184467, AND HD 198084

机译:CHARA ARRAY进行的单独条纹包观察。 I.德拉科尼斯,HD 184467和HD 198084的方法和新轨道

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We present the modification of the orbits of χ Draconis and HD 184467, and a completely new orbit for HD 198084, including data taken at the Center for High Angular Resolution Astronomy (CHARA) Array. These data were obtained using a modification of the technique of separated fringe packets (SFPs). The accuracy of the SFP data surpasses that of data taken by speckle, but the technique is much more time and labor intensive. Additionally, using SFPs with the CHARA Array, it is possible to obtain separations below the detection range of speckle interferometry (≥30?mas) above the range in "classic" long-baseline interferometry where fringes from a binary overlap are no longer separated (≤10?mas). Using spectroscopic binary systems with published speckle orbits, we are able to test our new measurements against their ephemerides to calibrate the method as well as produce entirely new orbits for systems with no current astrometric observations.
机译:我们介绍了χDraconis和HD 184467轨道的修改,以及HD 198084的全新轨道,包括在高角度分辨率天文学(CHARA)阵列中心获取的数据。这些数据是使用分离条纹数据包(SFP)技术的修改获得的。 SFP数据的准确性超过散斑获取的数据,但是该技术需要更多的时间和人力。此外,将SFP与CHARA阵列配合使用,可以获得散斑干涉测量的检测范围(≥30?mas)以下的分离,该距离高于“经典”长基线干涉测量的范围,在该范围内不再分离二进制重叠的条纹( ≤10?mas)。使用具有已发布散斑轨道的光谱二元系统,我们能够针对其星历表测试我们的新测量结果,以校准该方法,并为没有当前天文观测的系统产生全新的轨道。

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