首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Balloon flight test of a Compton telescope based on scintillators with silicon photomultiplier readouts
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Balloon flight test of a Compton telescope based on scintillators with silicon photomultiplier readouts

机译:基于具有硅光电倍增管读数的闪烁体的康普顿望远镜的气球飞行测试

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We present the results of the first high-altitude balloon flight test of a concept for an advanced Compton telescope making use of modern scintillator materials with silicon photomultiplier (SiPM) readouts. There is a need in the fields of high-energy astronomy and solar physics for new medium-energy gamma-ray (~ 0.4-10 MeV) detectors capable of making sensitive observations of both line and continuum sources over a wide dynamic range. A fast scintillator-based Compton telescope with SiPM readouts is a promising solution to this instrumentation challenge, since the fast response of the scintillators permits both the rejection of background via time-of-flight (ToF) discrimination and the ability to operate at high count rates. The Solar Compton Telescope (SolCompT) prototype presented here was designed to demonstrate stable performance of this technology under balloon-flight conditions. The SolCompT instrument was a simple two-element Compton telescope, consisting of an approximately one-inch cylindrical stilbene crystal for a scattering detector and a one-inch cubic LaBr_3:Ce crystal for a calorimeter detector. Both scintillator detectors were read out by 2 × 2 arrays of Hamamatsu S11828-3344 MPPC devices. Custom front-end electronics provided optimum signal rise time and linearity, and custom power supplies automatically adjusted the SiPM bias voltage to compensate for temperature-induced gain variations. A tagged calibration source, consisting of ~240 nCi of ~(60)Co embedded in plastic scintillator, was placed in the field of view and provided a known source of gamma rays to measure in flight The SolCompT balloon payload was launched on 24 August 2014 from Fort Sumner, NM, and spent ~3.75 h at a float altitude of ~ 123,000 ft. The instrument performed well throughout the flight. After correcting for small (~ 10%) residual gain variations, we measured an in-flight ToF resolution of ~760 ps (FWHM). Advanced scintillators with SiPM readouts continue to show great promise for future gamma-ray instruments.
机译:我们展示了使用现代闪烁体材料和硅光电倍增管(SiPM)读数的先进康普顿望远镜概念的首次高空气球飞行测试的结果。在高能天文学和太阳物理学领域,需要新型的中能伽马射线(〜0.4-10 MeV)探测器能够在宽动态范围内对线和连续源进行敏感的观测。具有闪烁闪烁信号且具有SiPM读数的基于Compton的快速望远镜是解决该仪器挑战的有前途的解决方案,因为闪烁器的快速响应既可以通过飞行时间(ToF)辨别来拒绝背景,又可以在高计数下工作费率。此处介绍的Solar Compton望远镜(SolCompT)原型旨在证明该技术在气球飞行条件下的稳定性能。 SolCompT仪器是一台简单的两元素康普顿望远镜,由用于散射检测器的大约一英寸的圆柱形晶体和用于量热计检测器的一英寸的立方LaBr_3:Ce晶体组成。通过Hamamatsu S11828-3344 MPPC设备的2×2阵列读取两个闪烁体检测器。定制的前端电子设备提供了最佳的信号上升时间和线性度,定制的电源自动调整了SiPM偏置电压,以补偿温度引起的增益变化。一个标记的校准源被放置在视野中,该校准源由嵌入在塑料闪烁体中的〜240 nCi的〜(60)Co组成,并提供了已知的伽玛射线源以在飞行中进行测量。SolCompT气球有效载荷于2014年8月24日发射来自新墨西哥州萨姆纳堡,在〜123,000 ft的浮空处停留了约3.75 h。该仪器在整个飞行过程中表现良好。校正较小的(约10%)残留增益变化后,我们测量了约760 ps(FWHM)的飞行中ToF分辨率。具有SiPM读数的先进闪烁体继续显示出对未来伽马射线仪器的巨大希望。

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