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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >New readout and data-acquisition system in an electron-tracking Compton camera for MeV gamma-ray astronomy (SMILE-Ⅱ)
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New readout and data-acquisition system in an electron-tracking Compton camera for MeV gamma-ray astronomy (SMILE-Ⅱ)

机译:用于MeV伽马射线天文学的电子跟踪康普顿相机中的新型读出和数据采集系统(SMILE-Ⅱ)

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摘要

For MeV gamma-ray astronomy, we have developed an electron-tracking Compton camera (ETCC) as a MeV gamma-ray telescope capable of rejecting the radiation background and attaining the high sensitivity of near 1 mCrab in space. Our ETCC comprises a gaseous time-projection chamber (TPC) with a micro pattern gas detector for tracking recoil electrons and a position-sensitive scintillation camera for detecting scattered gamma rays. After the success of a first balloon experiment in 2006 with a small ETCC (using a 10 × 10 × 15 cm~3 TPC) for measuring diffuse cosmic and atmospheric sub-MeV gamma rays (Sub-MeV gamma-ray Imaging Loaded-on-balloon Experiment Ⅰ; SMILE-Ⅰ), a (30 cm)~3 medium-sized ETCC was developed to measure MeV gamma-ray spectra from celestial sources, such as the Crab Nebula, with single-day balloon flights (SMILE-Ⅱ). To achieve this goal, a 100-times-larger detection area compared with that of SMILE-Ⅰ is required without changing the weight or power consumption of the detector system. In addition, the event rate is also expected to dramatically increase during observation. Here, we describe both the concept and the performance of the new data-acquisition system with this (30 cm)~3 ETCC to manage 100 times more data while satisfying the severe restrictions regarding the weight and power consumption imposed by a balloon-borne observation. In particular, to improve the detection efficiency of the fine tracks in the TPC from ~ 10% to ~ 100%, we introduce a new data-handling algorithm in the TPC. Therefore, for efficient management of such large amounts of data, we developed a data-acquisition system with parallel data flow.
机译:对于MeV伽马射线天文学,我们开发了一种电子跟踪康普顿相机(ETCC)作为MeV伽马射线望远镜,能够拒绝辐射本底并获得太空中接近1 mCrab的高灵敏度。我们的ETCC包括一个气态时间投射室(TPC),该气体带有一个用于跟踪反冲电子的微图案气体检测器和一个用于检测散射伽马射线的位置敏感型闪烁相机。在2006年使用小型ETCC(使用10×10×15 cm〜3 TPC)进行的首次气球实验成功之后,该气球用于测量弥散的宇宙和大气中的MeVγ射线(Sub-MeVγ射线成像)气球实验Ⅰ;SMILE-Ⅰ),开发了一个(30 cm)〜3的中型ETCC,用单日气球飞行(SMILE-Ⅱ)测量来自天体来源(如蟹状星云)的MeV伽玛射线谱。为了实现这一目标,需要在不改变检测器系统重量或功耗的前提下,将检测面积比SMILE-Ⅰ大100倍。此外,在观察过程中,事件发生率也有望显着提高。在这里,我们描述了使用这种(30厘米)〜3 ETCC来管理100倍数据的新数据采集系统的概念和性能,同时满足了气球观测带来的对重量和功耗的严格限制。特别是,为了将TPC中的细迹的检测效率从〜10%提高到〜100%,我们在TPC中引入了一种新的数据处理算法。因此,为了有效管理如此大量的数据,我们开发了具有并行数据流的数据采集系统。

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  • 作者单位

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Unit of Synergetic Studies for Space, Kyoto University, 606-8502 Kyoto, Japan,Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan,Unit of Synergetic Studies for Space, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kyoto University, 606-8502 Kyoto, Japan;

    Department of Physics, Kobe University, 658-8501 Kobe, Japan;

    Institute for Materials Research, Tohoku University, 980-8577 Sendai, Japan;

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  • 正文语种 eng
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  • 关键词

    MeV gamma-ray astronomy; Compton camera; ETCC; Electron track;

    机译:MeV伽马射线天文学;康普顿相机;ETCC;电子轨道;

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