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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Characterization of a 2 x 2 array of large square bars of LaBr_3:Ce detectors with γ-rays up to 22.5 MeV
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Characterization of a 2 x 2 array of large square bars of LaBr_3:Ce detectors with γ-rays up to 22.5 MeV

机译:用高达22.5 MeV的γ射线表征LaBr_3:Ce探测器的2 x 2大方条阵列

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LaBr_3:Ce scintillators have recently become commercially available in sizes large enough for measurements of high energy gamma-rays. In this communication, we report our studies on properties and response of large volume square bars (2" x 2" x 8") of LaBr_3:Ce detectors, individually, and in a compact array of four square bars, with gamma-rays up to 22.5 MeV. The properties studied are, uniformity of the crystal, internal radioactivity, energy resolution, timing resolution, linearity of the response and detection efficiencies. The response of the detectors for 22.5 MeV γ-rays produced from (11)~B(p, γ)(12)~C capture reaction and for 15.1 MeV γ-rays produced from (12)~C(.p,p'y)(12)~C inelastic scattering reaction are studied in detail. The measured absolute efficiencies (both total detection and photo-peak) for 662 keV gamma-rays from (137)~Cs are compared to those obtained using realistic GEANT4 simulations. The primary aim of the array is to measure high energy gamma-rays (5-50 MeV) produced from the de-excitation of excited Giant Dipole Resonance (GDR) states, radiative capture reactions, nuclear Bremsstrahlung process and inelastic scattering process. The highly satisfactory performance of the array provides the impetus for future efforts toward building a bigger array.
机译:LaBr_3:Ce闪烁体最近已在市场上出售,其尺寸足以测量高能伽马射线。在本通讯中,我们报告了我们对LaBr_3:Ce检测器的大体积方条(2“ x 2” x 8“)的性能和响应的研究,这些研究分别以四个正方形条的紧凑阵列进行,其中伽玛射线向上到22.5 MeV。研究的性质是,晶体的均匀性,内部放射性,能量分辨率,定时分辨率,线性响应和检测效率。(11)〜B(2)产生的22.5 MeVγ射线的探测器响应p,γ)(12)〜C俘获反应,并详细研究了由(12)〜C(.p,p'y)(12)〜C非弹性散射反应产生的15.1 MeVγ射线,并测量了绝对效率将来自(137)〜Cs的662keVγ射线的总探测和峰峰值进行了比较,并与真实的GEANT4模拟结果进行了比较,该阵列的主要目的是测量高能γ射线(5-50 MeV) )是由激发巨偶极子共振(GDR)状态的去激励,辐射捕获反应,Bre致辐射核处理和非弹性散射过程。该阵列的高度令人满意的性能为将来构建更大阵列的努力提供了动力。

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