A Space-based All-sky MeV γ-ray Survey with the Electron Tracking Compton Camera

K. Hamaguchi, T. Tanimori, A. Takada, J. Beacom, S. Gunji, M. Mori, T. Nakamori, C. Shrader, David M. Smith, T. Tamagawa, B. Tsurutani
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Abstract

A sensitive survey of the MeV gamma-ray sky is needed to understand important astrophysical problems such as gamma-ray bursts in the early universe, progenitors of Type Ia supernovae, and the nature of dark matter. However, the study has not progressed remarkably since the limited survey by COMPTEL onboard CGRO in the 1990s. Tanimori et al. have developed a Compton camera that tracks the trajectory of each recoil electron in addition to the information obtained by the conventional Compton cameras, leading to superior imaging. This Electron Tracking Compton Camera (ETCC) facilitates accurate reconstruction of the incoming direction of each MeV photon from a wide sky at ~degree angular resolution and with minimized particle background using trajectory information. The latest ETCC model, SMILE-2+, made successful astronomical observations during a day balloon flight in 2018 April and detected diffuse continuum and 511 keV annihilation line emission from the Galactic Center region at a high significance in ~2.5 hours. We believe that MeV observations from space with upgraded ETCCs will dramatically improve our knowledge of the MeV universe. We advocate for a space-based all-sky survey mission with multiple ETCCs onboard and detail its expected benefits.
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基于电子跟踪康普顿相机的天基全天MeV γ射线测量
需要对MeV伽玛射线天空进行敏感的调查,以了解重要的天体物理问题,如早期宇宙中的伽玛射线爆发,Ia型超新星的祖先以及暗物质的性质。然而,自从COMPTEL在1990年船上CGRO有限调查以来,研究没有显著进展。Tanimori等人开发了一种康普顿相机,除了传统康普顿相机所获得的信息外,该相机还可以跟踪每个反冲电子的轨迹,从而获得更好的成像效果。该电子跟踪康普顿相机(ETCC)利用轨迹信息,以~度角分辨率精确重建了每个MeV光子从广阔天空的入射方向,并使粒子背景最小化。最新的ETCC模型SMILE-2+在2018年4月的一次日间气球飞行中成功地进行了天文观测,并在约2.5小时内探测到银河系中心区域的漫射连续体和511 keV湮灭线发射,具有很高的意义。我们相信,通过升级的etcc从太空进行MeV观测将极大地提高我们对MeV宇宙的认识。我们提倡使用多个etcc的天基全天巡天任务,并详细说明其预期的好处。
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