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首页> 外文期刊>The Astrophysical journal >A k-NN METHOD TO CLASSIFY RARE ASTRONOMICAL SOURCES: PHOTOMETRIC SEARCH OF BROWN DWARFS WITH SPITZER/IRAC
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A k-NN METHOD TO CLASSIFY RARE ASTRONOMICAL SOURCES: PHOTOMETRIC SEARCH OF BROWN DWARFS WITH SPITZER/IRAC

机译:稀有天文学来源分类的k-NN方法:用SPITZER / IRAC对棕色矮人进行光度搜索

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We present a statistical method for the photometric search of rare astronomical sources based on the weighted k-Nearest Neighbors method. A metric is defined in a multidimensional color-magnitude space based only on the photometric properties of template sources and the photometric uncertainties of both templates and data, without the need to define ad hoc color and magnitude cuts which could bias the search. The metric is defined as a function of two parameters, the number of neighbors k and a threshold distance D th that can be optimized for maximum selection efficiency and completeness. We apply the method to the search of L and T dwarfs in the Spitzer Extragalactic First Look Survey and the Bo?tes field of the Spitzer Shallow Survey, as well as to the search of substellar mass companions around nearby stars. With high level of completeness, we confirm the absence of late-T dwarfs detected in at least two bands in the First Look Survey, and only one in the Shallow Survey (previously discovered by Stern et al.). This result is in agreement with the expected statistics for late-T dwarfs. One L/early-T candidate is found in the First Look Survey, and three in the Shallow Surveys, currently undergoing follow-up spectroscopic verification. Finally, we discuss the potential for brown dwarf searches with this method in the Spitzer warm mission Exploration Science programs.
机译:我们提出一种基于加权k最近邻方法的稀有天文源光度搜索的统计方法。仅基于模板源的光度特性以及模板和数据的光度不确定性,在多维颜色量级空间中定义度量,而无需定义可能会偏向搜索的临时颜色和幅度削减。该度量定义为两个参数的函数,两个参数分别是邻居数k和阈值距离D th,可以针对最大选择效率和完整性进行优化。我们将该方法应用于Spitzer星系外星初视调查和Spitzer浅度调查的Botes场中的L和T矮星的搜索,以及搜索附近恒星周围的星下质量伴星。凭借较高的完整性,我们确认在“首次观察”调查中至少有两个波段中没有检测到晚期T矮星,而在“浅度调查”中则只有一个(早先由Stern等人发现)。这一结果与后期T矮星的预期统计数据相符。在“初次观察”调查中发现了一个L / early-T候选人,在“浅调查”中发现了三个,目前正在进行后续光谱验证。最后,我们在Spitzer暖任务探索科学计划中讨论了用这种方法进行棕矮星搜索的可能性。

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