论文标题
无线电检测超高的能量宇宙射线,低月球旋转的smallsats
Radio Detection of Ultra-high Energy Cosmic Rays with Low Lunar Orbiting SmallSats
论文作者
论文摘要
超高的能量宇宙射线(UHECR)是观察到的最有能量的颗粒,并用作极端宇宙的探针。理解负责其加速的暴力过程的一个关键问题是确定哪些类别的天体物理对象(例如,活跃的银河系核或星堡星系)与它们的到达方向相关。尽管源聚类受到银河磁场中的偏差的限制,但在最高能量的散射角度足够低以保持与源目录的相关性。尽管有几项研究试图鉴定与皮埃尔螺旋钻天文台和望远镜阵列的数据的源目录相关性,但高于各向同性背景的显着性尚未达到发现的阈值。几十年来,众所周知,全天空的UHECR天文台将对UHECRS的各向异性成分的敏感性大大提高。在那个时候,使用轨道上的荧光检测到轨道上的荧光检测,在那个时候有了几个概念,以鉴定猫头鹰,杰姆 - 欧苏和诗歌。在这份白皮书中,我们提出了一个名为Zettavolt Askaryan Polarimeter(ZAP)的概念,旨在使用UHECRS在Moon's Regolith中从低月球轨道上相互作用的Askaryan无线电发射的无线电检测来识别UHECR的来源。
Ultra-high energy cosmic rays (UHECRs) are the most energetic particles observed and serve as a probe of the extreme universe. A key question to understanding the violent processes responsible for their acceleration is identifying which classes of astrophysical objects (active galactic nuclei or starburst galaxies, for example) correlate to their arrival directions. While source clustering is limited by deflections in the Galactic magnetic field, at the highest energies the scattering angles are sufficiently low to retain correlation with source catalogues. While there have been several studies attempting to identify source catalogue correlations with data from the Pierre Auger Observatory and the Telescope Array, the significance above an isotropic background has not yet reached the threshold for discovery. It has been known for several decades that a full-sky UHECR observatory would provide a substantial increase in sensitivity to the anisotropic component of UHECRs. There have been several concepts developed in that time targeting the identification of UHECR sources such as OWL, JEM-EUSO, and POEMMA, using fluorescence detection in the Earth's atmosphere from orbit. In this white paper, we present a concept called the Zettavolt Askaryan Polarimeter (ZAP), designed to identify the source of UHECRs using radio detection of the Askaryan radio emissions produced by UHECRs interacting in the Moon's regolith from low lunar orbit.