论文标题

验证标准化数据格式和基于粒子基于粒子的伽马射线观测器的工具

Validation of standardized data formats and tools for ground-level particle-based gamma-ray observatories

论文作者

Albert, A., Alfaro, R., Arteaga-Velázquez, J. C., Solares, H. A. Ayala, Babu, R., Belmont-Moreno, E., Brisbois, C., Caballero-Mora, K. S., Capistrán, T., Carramiñana, A., Casanova, S., Chaparro-Amaro, O., Cotti, U., Cotzomi, J., de León, S. Coutiño, De la Fuente, E., Hernandez, R. Diaz, DuVernois, M. A., Durocher, M., Espinoza, C., Fan, K. L., Alonso, M. Fernández, Fraija, N., García-González, J. A., Goksu, H., González, M. M., Goodman, J. A., Harding, J. P., Hinton, J., Huang, D., Hueyotl-Zahuantitla, F., Hüntemeyer, P., Jardin-Blicq, A., Joshi, V., Linnemann, J. T., Longinotti, A. L., Luis-Raya, G., Malone, K., Marandon, V., Martinez, O., Martínez-Castro, J., Matthews, J. A., Miranda-Romagnoli, P., Morales-Soto, J. A., Moreno, E., Mostafá, M., Nayerhoda, A., Nellen, L., Nisa, M. U., Noriega-Papaqui, R., Olivera-Nieto, L., Pérez-Pérez, E. G., Rho, C. D., Rosa-González, D., Ruiz-Velasco, E., Salazar-Gallegos, D., Greus, F. Salesa, Sandoval, A., Schoorlemmer, H., Serna-Franco, J., Smith, A. J., Son, Y., Springer, R. W., Tollefson, K., Torres, I., Torres-Escobedo, R., Turner, R., Ureña-Mena, F., Villaseñor, L., Wang, X., Watson, I. J., Willox, E., Zhou, H., de León, C., Zepeda, A., Donath, A., Funk, S.

论文摘要

基于地面的伽马射线天文学仍然是一个相当年轻的研究领域,与粒子物理学具有牢固的历史联系。这就是为什么大多数观察是通过专有数据和分析软件实验进行的,就像粒子物理领域一样。然而,近年来,这种范式一直在逐渐转向开源数据格式和工具的开发和使用,这是由即将到来的观测站(例如Cherenkov望远镜阵列(CTA))驱动的。在这种情况下,已经开发了一种社区驱动的,共享的数据格式(γ-astro-data-format或GADF),以及诸如γ和ctools之类的分析工具。到目前为止,这些努力是由IACT社区领导的,遗漏了其他类型的地面伽马射线仪器。我们的目的是表明,地面粒子阵列(例如高空水切伦科夫(HAWC)天文台)的数据也与GADF兼容,并因此可以使用相关工具来对这种情况进行完全分析,从而在这种情况下可以在这种情况下进行gammapy进行分析。我们使用符合GADF标准的伽马疗和数据产品复制了几个已发表的HAWC结果。我们还通过产生螃蟹光谱的关节拟合(包括来自六个不同伽马射线实验的数据)来说明共享格式和工具的功能。我们发现与参考结果的一致性很高,对已发布的结果和所涉及的工具进行了有力检查。来自粒子检测器阵列(例如HAWC天文台)的数据可以适应GADF,因此可以通过伽马疗法进行分析。通用的数据格式和共享分析工具允许多仪器联合分析和有效的数据共享。鉴于指向和宽场仪器的互补性,这种协同作用将对对未来的观测站的联合科学开发(例如南部宽场伽马射线天文台和CTA)具有明显的有益。

Ground-based gamma-ray astronomy is still a rather young field of research, with strong historical connections to particle physics. This is why most observations are conducted by experiments with proprietary data and analysis software, as it is usual in the particle physics field. However in recent years, this paradigm has been slowly shifting towards the development and use of open-source data formats and tools, driven by upcoming observatories such as the Cherenkov Telescope Array (CTA). In this context, a community-driven, shared data format (the gamma-astro-data-format or GADF) and analysis tools such as Gammapy and ctools have been developed. So far these efforts have been led by the IACT community, leaving out other types of ground-based gamma-ray instruments.We aim to show that the data from ground particle arrays, such as the High-Altitude Water Cherenkov (HAWC) observatory, is also compatible with the GADF and can thus be fully analysed using the related tools, in this case Gammapy. We reproduce several published HAWC results using Gammapy and data products compliant with GADF standard. We also illustrate the capabilities of the shared format and tools by producing a joint fit of the Crab spectrum including data from six different gamma-ray experiments. We find excellent agreement with the reference results, a powerful check of both the published results and the tools involved. The data from particle detector arrays such as the HAWC observatory can be adapted to the GADF and thus analysed with Gammapy. A common data format and shared analysis tools allow multi-instrument joint analysis and effective data sharing. Given the complementary nature of pointing and wide-field instruments, this synergy will be distinctly beneficial for the joint scientific exploitation of future observatories such as the Southern Wide-field Gamma-ray Observatory and CTA.

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