Half-a-century of gamma-ray astrophysics at the Max-Planck Institute for Extraterrestrial Physics

IF 0.8 4区 物理与天体物理 Q2 HISTORY & PHILOSOPHY OF SCIENCE
Volker Schönfelder, Jochen Greiner
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引用次数: 0

Abstract

Gamma-ray astronomy has been one of the prime scientific research fields of the Max-Planck Institute for Extraterrestrial Physics (MPE) from its beginning. Over the years, the entire gamma-ray energy range accessible from space was explored. The purpose of this review article is to summarise the achievements of the gamma-ray group at MPE during the last 50+ years. This covers a substantial part of the general history of space-based gamma-ray astronomy, for which both, general review articles (e.g. Pinkau in Exp Astron 5: 157, 2009; Schönfelder in AN 323: 524, 2002; Trimble in AIP Conf Proc 304: 40, 1994) and a detailed tabular list of events and missions (Leonard and Gehrels in https://heasarc.gsfc.nasa.gov/docs/history, version 1.0.8, 2009), have been compiled. Here, we describe the gamma-ray activities at MPE from the beginning till the present, reviewing the tight interplay between new technological developments towards new instruments and scientific progress in understanding gamma-ray sources in the sky. This covers (i) the early development of instruments and their tests on half a dozen balloon flights, (ii) the involvement in the most important space missions at the time, i.e. ESA’s COS-B satellite, NASA’s Compton Gamma-ray Observatory and Fermi Space Telescope, as well as ESA’s INTEGRAL observatory, (iii) the participation in several other missions such as TD-1, Solar Maximum Mission, or Ulysses, and (iv) the complementary ground-based optical instruments OPTIMA and GROND to enhance selected science topics (pulsars, gamma-ray bursts). With the gradual running-out of institutional support since 2010, gamma-ray astrophysics as a main research field has now come to an end at MPE.

马克斯-普朗克地外物理研究所半个世纪的伽马射线天体物理学研究
伽马射线天文学从一开始就是马克斯-普朗克地外物理研究所(MPE)的主要科研领域之一。多年来,研究所探索了从太空可以到达的整个伽马射线能量范围。这篇综述文章旨在总结马普研究所伽马射线小组在过去 50 多年中取得的成就。这涵盖了天基伽马射线天文学一般历史的很大一部分,为此已汇编了一般性评论文章(例如,Pinkau,载于Exp Astron 5: 157,2009年;Schönfelder,载于AN 323: 524,2002年;Trimble,载于AIP Conf Proc 304: 40,1994年)以及事件和任务的详细表格清单(Leonard和Gehrels,载于https://heasarc.gsfc.nasa.gov/docs/history,1.0.8版,2009年)。在这里,我们描述了 MPE 从开始到现在的伽马射线活动,回顾了新仪器的新技 术发展与了解天空中伽马射线源的科学进步之间的紧密联系。这包括:(i) 仪器的早期开发及其在六次气球飞行中的测试;(ii) 参与当时最重要的空间任务,即欧空局的 COS-B 卫星;(iii) 对伽马射线源的研究。欧空局的 COS-B 卫星、美国航天局的康普顿伽马射线天文台和费米太空望远镜,以及欧空局的 INTEGRAL 观测台,(iii) 参与其他几项任务,如 TD-1、太阳最大使命或尤利西斯,(iv) 补充地面光学仪器 OPTIMA 和 GROND,以加强选定的科学主题(脉冲星、伽马射线暴)。自 2010 年以来,随着机构支持的逐步耗尽,伽马射线天体物理学作为 MPE 的主 要研究领域现已结束。
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来源期刊
The European Physical Journal H
The European Physical Journal H HISTORY & PHILOSOPHY OF SCIENCE-PHYSICS, MULTIDISCIPLINARY
CiteScore
1.60
自引率
10.00%
发文量
13
审稿时长
>12 weeks
期刊介绍: The purpose of this journal is to catalyse, foster, and disseminate an awareness and understanding of the historical development of ideas in contemporary physics, and more generally, ideas about how Nature works. The scope explicitly includes: - Contributions addressing the history of physics and of physical ideas and concepts, the interplay of physics and mathematics as well as the natural sciences, and the history and philosophy of sciences, together with discussions of experimental ideas and designs - inasmuch as they clearly relate, and preferably add, to the understanding of modern physics. - Annotated and/or contextual translations of relevant foreign-language texts. - Careful characterisations of old and/or abandoned ideas including past mistakes and false leads, thereby helping working physicists to assess how compelling contemporary ideas may turn out to be in future, i.e. with hindsight.
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