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GRAINE balloon experiment in 2015 - Precise observations of cosmic gamma rays by a high-resolution emulsion telescope

机译:2015年GRAINE气球实验-高分辨率乳胶望远镜对宇宙伽马射线的精确观测

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Observations of cosmic gamma rays are important for studying high energy phenomena in the universe. Since 2008, the Large Area Telescope on the Fermi satellite has surveyed the whole gamma-ray sky in the sub-GeV/GeV energy region, and accumurated a large amount of data. However, observations at the low galactic latitude remains difficult because of a lack of angular resolution, increase of background flux originating from galactic diffuse gamma rays, etc. The Gamma-Ray Astro-Imager with Nuclear Emulsion (GRAINE) is a gamma-ray observation project with a new balloon-borne emulsion gamma-ray telescope. Nuclear emulsion is a high-resolution 3D tracking device. It determines the incident angle with 0.1° resolution for 1?GeV gamma rays (1.0° for 100 MeV), and has linear polarization sensitivity. GRAINE aims at precise observation of gamma-ray sources, especially in the galactic plane, by repeating long-duration balloon flights with large-aperture-area (10?m2) high-resolution emulsion telescopes. In May 2015, we performed a balloon-borne experiment in Alice Springs, Australia, in order to demonstrate the imaging performance of our telescope. The emulsion telescope that has an aperture area of 0.4 m2 was employed in this experiment. It observed the Vela pulsar (the brightest gamma-ray source in the GeV sky) at an altitude of 37?km for 6 hours out of the flight duration of 14 hours. In this presentation, we will report the latest results and the status of the GRAINE project.
机译:宇宙伽玛射线的观测对于研究宇宙中的高能现象非常重要。自2008年以来,费米卫星上的大面积望远镜已对次GeV / GeV能量区域中的整个伽马射线天空进行了勘测,并积累了大量数据。但是,由于缺乏角分辨率,由于银河漫射伽马射线引起的背景通量增加等原因,在低银河纬度进行观测仍然很困难。带核乳剂的伽马射线天文成像仪(GRAINE)是伽马射线观测新型气球式乳胶伽马射线望远镜进行的项目。核乳剂是高分辨率3D跟踪设备。它确定1?GeV伽马射线的入射角的分辨率为0.1°(100 MeV为1.0°),并具有线性偏振灵敏度。 GRAINE的目的是通过使用大孔径面积(10?m2)高分辨率乳胶望远镜重复长时间的气球飞行来精确观测伽玛射线源,尤其是在银河平面内。 2015年5月,我们在澳大利亚爱丽丝泉进行了气球飞行实验,目的是演示我们望远镜的成像性能。在本实验中使用孔径面积为0.4 m2的乳胶望远镜。它在14小时的飞行时间中,在37?km的高度上观测了Vela脉冲星(GeV天空中最亮的伽玛射线源)持续6个小时。在本演示中,我们将报告GRAINE项目的最新结果和状态。

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