论文标题

Astri望远镜迷你阵​​列的科学前景:伽马射线TEV数据挑战

Scientific prospects for a mini-array of ASTRI telescopes: a gamma-ray TeV data challenge

论文作者

Pintore, F., Giuliani, A., Belfiore, A., Paizis, A., Mereghetti, S., La Palombara, N., Crestan, S., Sidoli, L., Lombardi, S., D'Aì, A., Saturni, F. G., Caraveo, P., Burtovoi, A., Fiori, M., Boccato, C., Caccianiga, A., Costa, A., Cusumano, G., Gallozzi, S., Zampieri, L., Balmaverde, B., Tibaldo, L.

论文摘要

Astri是一个旨在实现伽马射线成像Cherenkov望远镜的项目,该项目观察到TEV乐队中的天空。最近,Istituto Nazionale di Astrofisica资助了Astri望远镜的迷你阵列(MA)。 Astri综合数据挑战(ACDC)项目旨在通过对暂定科学计划进行完整的端到端模拟来优化Astri MA的科学剥削和分析技术,从生成适当的仪器响应功能到对模拟数据的提案,选择,分析和解释。我们假设MA将包含在(几乎)平方几何形状(望远镜之间的平均距离约250m)中排列的9个Astri望远镜。我们模拟了三年的观察结果,采用了一个现实的指向计划,该计划在每个领域中都考虑到了帕兰纳尔(智利)中假定位点的可见性约束,并在黑暗的天空条件下进行了观察时间插槽。我们模拟了为其科学利益而选择的19个银河系和乳突外田的观察结果,包括几类的物体(例如脉冲星,超新星残留物,伽玛射线二进制二进制物等),总计81点样和扩展的来源。在这里,我们介绍了ACDC项目的概述,提供了有关执行Astri MA的三年操作所需的不同软件包的详细信息。我们通过利用TEV天文学界广泛采用的原型科学工具来讨论对整个模拟数据应用的系统分析的结果。此外,还特别强调了一些用作基准的目标。

ASTRI is a project aiming at the realization of a gamma-ray imaging Cherenkov telescope that observes the sky in the TeV band. Recently, the development of a mini-array (MA) of ASTRI telescopes has been funded by the Istituto Nazionale di Astrofisica. The ASTRI Comprehensive Data Challenge (ACDC) project aims at optimizing the scientific exploitation and analysis techniques of the ASTRI MA, by performing a complete end-to-end simulation of a tentative scientific program, from the generation of suitable instrument response functions to the proposal, selection, analysis, and interpretation of the simulated data. We assumed that the MA will comprise nine ASTRI telescopes arranged in a (almost) square geometry (mean distance between telescopes of ~250m). We simulated three years of observations, adopting a realistic pointing plan that takes into account, for each field, visibility constraints for an assumed site in Paranal (Chile) and observational time slots in dark sky conditions. We simulated the observations of nineteen Galactic and extragalactic fields selected for their scientific interest, including several classes of objects (such as pulsar wind nebulae, supernova remnants, gamma-ray binaries etc), for a total of 81 point-like and extended sources. Here we present an overview of the ACDC project, providing details on the different software packages needed to carry out the simulated three-years operation of the ASTRI MA. We discuss the results of a systematic analysis applied on the whole simulated data, by making use of prototype science tools widely adopted by the TeV astronomical community. Furthermore, particular emphasis is also given to some targets used as benchmarks.

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