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Transient processing and analysis using AMPEL: alert management, photometry, and evaluation of light curves ?

机译:使用AMPEL进行瞬态处理和分析:警报管理,测光和光曲线评估

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Context. Both multi-messenger astronomy and new high-throughput wide-field surveys require flexible tools for the selection and analysis of astrophysical transients. Aims. Here we introduce the alert management, photometry, and evaluation of light curves ( AMPEL ) system, an analysis framework designed for high-throughput surveys and suited for streamed data. AMPEL combines the functionality of an alert broker with a generic framework capable of hosting user-contributed code; it encourages provenance and keeps track of the varying information states that a transient displays. The latter concept includes information gathered over time and data policies such as access or calibration levels. Methods. We describe a novel ongoing real-time multi-messenger analysis using AMPEL to combine IceCube neutrino data with the alert streams of the Zwicky Transient Facility (ZTF). We also reprocess the first four months of ZTF public alerts, and compare the yields of more than 200 different transient selection functions to quantify efficiencies for selecting Type Ia supernovae that were reported to the Transient Name Server (TNS). Results. We highlight three channels suitable for (1) the collection of a complete sample of extragalactic transients, (2) immediate follow-up of nearby transients, and (3) follow-up campaigns targeting young, extragalactic transients. We confirm ZTF completeness in that all TNS supernovae positioned on active CCD regions were detected. Conclusions. AMPEL can assist in filtering transients in real time, running alert reaction simulations, the reprocessing of full datasets as well as in the final scientific analysis of transient data. This is made possible by a novel way of capturing transient information through sequences of evolving states, and interfaces that allow new code to be natively applied to a full stream of alerts. This text also introduces a method by which users can design their own channels for inclusion in the AMPEL live instance that parses the ZTF stream and the real-time submission of high-quality extragalactic supernova candidates to the TNS.
机译:上下文。多信使天文学和新的高通量广域勘测都需要灵活的工具来选择和分析天体物理瞬变。目的在这里,我们介绍警报管理,光度测定和光曲线评估(AMPEL)系统,该系统是为高吞吐量调查而设计的分析框架,适用于流数据。 AMPEL将警报代理的功能与能够托管用户提供的代码的通用框架相结合。它鼓励出处并跟踪瞬态显示的各种信息状态。后一个概念包括随时间推移收集的信息以及诸如访问或校准级别之类的数据策略。方法。我们描述了一种使用AMPEL将IceCube中微子数据与Zwicky瞬态设施(ZTF)的警报流相结合的新型正在进行的实时多信使分析。我们还重新处理了ZTF公开警报的前四个月,并比较了200多种不同的瞬时选择函数的收益,以量化报告给瞬态名称服务器(TNS)的选择Ia型超新星的效率。结果。我们重点介绍了三个渠道,这些渠道适合(1)收集完整的河外瞬态样本,(2)立即跟踪附近的瞬态,以及(3)针对年轻的河外瞬态的跟踪活动。我们证实了ZTF的完整性,因为检测到了位于主动CCD区域上的所有TNS超新星。结论。 AMPEL可以帮助实时过滤瞬态,运行警报反应模拟,对完整数据集进行重新处理以及对瞬态数据进行最终科学分析。这是通过一种新颖的方式来实现的,该方式通过不断演变的状态序列以及允许将新代码天然地应用于完整警报流的接口来捕获瞬态信息。本文还介绍了一种方法,通过该方法,用户可以设计自己的频道以包含在AMPEL实时实例中,该实例解析ZTF流并向TNS实时提交高质量的银河系超新星候选者。

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