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Star confusion effect on SIM PlanetQuest astrometric performance

机译:SIM Planetquest Astromical性能的星系困惑效果

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SIM PlanetQuest will measure star positions to an accuracy of a few microarcseconds using precise white light fringe measurements. One challenge for the SIM observation scenario is "star confusion," where multiple stars are present in the instrument field of view. This is especially relevant for observing dim science targets because the density of number of stars increases rapidly with star magnitude. We study the effect of star confusion on the SIM astrometric performance due to systematic fringe errors caused by the extra photons from the confusion star(s). Since star confusion from multiple stars may be analyzed as a linear superposition of the effect from single star confusion, we quantify the astrometric errors due to single star confusion surveying over many spectral types, including AOV, FOV, K5III, and MOV, and for various visual magnitude differences. To the leading order, the star confusion effect is characterized by the magnitude difference, spectral difference, and the angular separation between the target and confusion stars. Strategies for dealing with star confusion are presented. For example, since the presence of additional sources in the field of view leads to inconsistent delay estimates from different channels, with sufficient signal to noise ratio, the star confusion can be detected using chi-square statistics of fringe measurements from multiple spectral channels. An interesting result is that the star confusion can be detected even though the interferometer cannot resolve the separation between the target and confusion stars when their spectra are sufficiently different. Other strategies for mitigating the star confusion effect are also discussed.
机译:SIM PlanetQuest将使用精确的白光边缘测量来测量星形位置,以精确的微静脉分解的准确性。 SIM观察方案的一个挑战是“Star混淆”,在仪器视野中存在多个恒星。这对于观察到暗淡科学目标特别重要,因为恒星数量的密度随着星级而迅速增加。我们研究Star混淆对SIM天体性能的影响,由于额外的额外光子来自困惑之星引起的系统条纹误差。由于来自多颗恒星的明星混淆可以分析为单星混淆效果的线性叠加,因此由于单星混淆测量,在许多光谱类型中测量了星形误差,包括AOV,FOV,K5III和MOV,以及各种谱图视觉幅度差异。到领先的顺序,星星混淆效应的特征在于幅度差,光谱差,以及目标和混乱恒星之间的角度分离。提出了处理星系混乱的策略。例如,由于视野中的附加源的存在导致来自不同信道的延迟估计,具有足够的信号到噪声比,可以使用来自多个光谱通道的条纹测量的Chi-Square统计来检测星形混淆。一个有趣的结果是,即使干涉仪不能在其光谱足够不同的情况下,即使干涉仪不能解决目标和混乱星之间的分离,也可以检测到明星混淆。还讨论了缓解星系混淆效果的其他策略。

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