论文标题

clarion2-trinity:康普顿抑制的HPGE和GAGG:CE-SI-SI阵列,用于重离子的绝对横截面测量

CLARION2-TRINITY: a Compton-suppressed HPGe and GAGG:Ce-Si-Si array for absolute cross-section measurements with heavy ions

论文作者

Gray, T. J., Allmond, J. M., Dowling, D. T., Febbraro, M., King, T. T., Pain, S. D., Stracener, D. W., Ajayi, S., Aragon, J., Baby, L., Barber, P., Benetti, C., Bhattacharya, S., Boisseau, R., Gibbons, J., Tabor, S. L., Tripathi, V., Wibisono, C., Wiedenhoever, I., Bignell, L., Gerathy, M. S. M., Lane, G., McKie, L. J., Mitchell, A. J., Pope, J., Rietz, R. du, Stuchbery, A. E., Vaigneur, K., Ruland, T. J.

论文摘要

描述了新的康普顿抑制的HPGE和带电的粒子阵列Clarion2-Trinity的设计和性能。三位一体带电的粒子阵列由64个掺杂的铝铝镀金石榴石(GAGG:CE)晶体组成,这些晶体配置为五个跨越7-54度的环,以及两个环形硅探测器,可以将角度覆盖或向后覆盖至Minimal $γ$ -RAIRAMARAL ARTENDENAUTION。 GAGG:CE是一种非Hygromocopic,明亮且相对快速的闪烁体,其光分布与sipm良好。计数速率高达每种晶体40 kHz是可持续的。 GAGG:CE的基本特征是测量和显示的,包括光和重离子颗粒识别(PID)能力,脉冲高缺陷,辐射硬度和发射光谱。 Clarion2阵列由多达16个由康普顿抑制的HPGE Clover探测器($ \ \%\%\%$ $ 1 MEV)组成,该探测器使用非架构的几何形状构造为四个环(8个HPGE Crystal环),可抑制背对面的511-Kevent 511-Kevident 511-Kevent 511-Kevent Gamma Rays。整个阵列都用100-MHz(14位)波形数字化器进行仪器,该数字可以实现无触发操作,脉冲歧视,快速时机和堆积校正。最后,给出了在Clarion2-Trinity系统调试期间获取的两个实验数据的示例:来自$^{16} $ O + $ + $ + $^{18} $ fusion-O fusion-e eveporation的PID频谱,以及PID和Doppler-creted $γ$ -RAIN SPECTRA,来自$^{48} $ ti + $ ti + $ ti + $ $^$^$^$^$^{12 12} $ ractiation。

The design and performance of a new Compton-suppressed HPGe and charged-particle array, CLARION2-TRINITY, are described. The TRINITY charged-particle array is comprised of 64 Cerium-doped Gadolinium Aluminium Gallium Garnet (GAGG:Ce) crystals configured into five rings spanning 7-54 degrees, and two annular silicon detectors that can shadow or extend the angular coverage to backward angles with minimal $γ$-ray attenuation. GAGG:Ce is a non-hygroscopic, bright, and relatively fast scintillator with a light distribution well matched to SiPMs. Count rates up to 40 kHz per crystal are sustainable. Fundamental characteristics of GAGG:Ce are measured and presented, including light- and heavy-ion particle identification (PID) capability, pulse-height defects, radiation hardness, and emission spectra. The CLARION2 array consists of up to 16 Compton-suppressed HPGe Clover detectors ($\approx4\%$ efficiency at 1 MeV) configured into four rings (eight HPGe crystal rings) using a non-Archimedean geometry that suppresses back-to-back coincident 511-keV gamma rays. The entire array is instrumented with 100- and 500-MHz (14 bit) waveform digitizers which enable triggerless operation, pulse-shape discrimination, fast timing, and pileup correction. Finally, two examples of experimental data taken during the commissioning of the CLARION2-TRINITY system are given: a PID spectrum from $^{16}$O + $^{18}$O fusion-evaporation, and PID and Doppler-corrected $γ$-ray spectra from $^{48}$Ti + $^{12}$C Coulomb excitation.

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