论文标题

MEV-EEV系列中伽马射线实验的未来

The Future of Gamma-Ray Experiments in the MeV-EeV Range

论文作者

Engel, Kristi, Goodman, Jordan, Huentemeyer, Petra, Kierans, Carolyn, Lewis, Tiffany R., Negro, Michela, Santander, Marcos, Williams, David A., Allen, Alice, Aramaki, Tsuguo, Batista, Rafael Alves, Benoit, Mathieu, Bloser, Peter, Bohon, Jennifer, Bolotnikov, Aleksey E., Brewer, Isabella, Briggs, Michael S., Brisbois, Chad, Burgess, J. Michael, Burns, Eric, Caputo, Regina, Carini, Gabriella A., Cenko, S. Bradley, Charles, Eric, Ciprini, Stefano, D'Elia, Valerio, Daylan, Tansu, Distel, James, Donath, Axel, Duvall, Wade, Fleischhack, Henrike, Fletcher, Corinne, Fong, Wen Fe, Gasparrini, Dario, Giardino, Marco, Goldstein, Adam, Griffin, Sean, Grove, J. Eric, Hamburg, Rachel, Harding, J. Patrick, Hare, Jeremy, Hristov, Boyan, Hui, C. Michelle, Jaffe, Tess, Jenke, Pete, Kargaltsev, Oleg, Karwin, Christopher M., Kerr, Matthew, Kim, Dongsung, Kocevski, Daniel, Krizmanic, John, Laha, Ranjan, Di Lalla, Niccolo, Legere, Jason, Leto, Cristina, Leys, Richard, Lucarelli, Fabrizio, Martinez-Castellanos, Israel, Maselli, Alessandro, Mazziotta, M. Nicola, McConnell, Mark, McEnery, Julie, Metcalfe, Jessica, Meyer, Manuel, Moiseev, Alexander A., Mukherjee, Reshmi, Negro, Michela, Ogasawara, Keiichi, Omodei, Nicola, Peric, Ivan, Perkins, Jeremy S., Perri, Matteo, Pittori, Carlotta, Polenta, Gianluca, Poulson, Daniel, Preece, Robert, Principe, Giacomo, Racusin, Judith L., Roberts, Oliver, Rodd, Nicholas L., Shawhan, Peter, Shutt, Thomas, Sleator, Clio, Smale, Alan, Smedley, John, Smith, Jacob R., Tasson, Jay, Teuben, Peter, Tomsick, John, Veres, Peter, Verrecchia, Francesco, Wadiasingh, Zorawar, Wilson-Hodge, Colleen A., Wood, Joshua, Woolf, Richard S., Yang, Hui, Zhang, Bing, Zhang, Haocheng, Zoglauer, Andreas

论文摘要

伽玛射线是最有能量的光子,从近距离河流范围内携带信息,而信息的相互作用最小或信息丢失。他们带来有关环境中粒子加速的信息,因此极端无法在地球上复制它们,以仔细观察。伽马射线天体物理学与对撞机的工作是如此相互互补,以至于粒子物理学家和天线物理学家通常是同一作品。在过去的十年中,伽玛射线仪器,尤其是费米伽马射线太空望远镜,在主要的多门教徒发现中一直是关键的。目前,有很多兴趣和科学专业知识可以推动新技术,计划和建立基于太空和地面的伽马射线设施,并建立具有伽玛射线的核心。因此,关于在社区再次聚集在一起进行计划练习之前,由于缺乏长期计划支持伽玛射线天体物理学的长期计划可能会丢失许多基础设施。因此,从MEV到EEV频段的能量的伽马射线对于多波长度和多通信器研究至关重要。这些目标和新发现产生了新的伽马射线设施提案和计划。本文重点介绍了新的和提议的伽马射线技术和设施,这些技术和设施旨在满足极端天体物理学来源的特定需求,这些技术在未来十年的基本物理学中探讨了一些最紧迫的问题。拟议的仪器还将解决在最近的Astro2020 Decadal调查中提出的优先事项,这是天体物理学界的一项补充研究,提供了与雪人的相关机会。

Gamma-rays, the most energetic photons, carry information from the far reaches of extragalactic space with minimal interaction or loss of information. They bring messages about particle acceleration in environments so extreme they cannot be reproduced on earth for a closer look. Gamma-ray astrophysics is so complementary with collider work that particle physicists and astroparticle physicists are often one in the same. Gamma-ray instruments, especially the Fermi Gamma-ray Space Telescope, have been pivotal in major multi-messenger discoveries over the past decade. There is presently a great deal of interest and scientific expertise available to push forward new technologies, to plan and build space- and ground-based gamma-ray facilities, and to build multi-messenger networks with gamma rays at their core. It is therefore concerning that before the community comes together for planning exercises again, much of that infrastructure could be lost to a lack of long-term planning for support of gamma-ray astrophysics. Gamma-rays with energies from the MeV to the EeV band are therefore central to multiwavelength and multi-messenger studies to everything from astroparticle physics with compact objects, to dark matter studies with diffuse large scale structure. These goals and new discoveries have generated a wave of new gamma-ray facility proposals and programs. This paper highlights new and proposed gamma-ray technologies and facilities that have each been designed to address specific needs in the measurement of extreme astrophysical sources that probe some of the most pressing questions in fundamental physics for the next decade. The proposed instrumentation would also address the priorities laid out in the recent Astro2020 Decadal Survey, a complementary study by the astrophysics community that provides opportunities also relevant to Snowmass.

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