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UCGretina GEANT4 Simulation of the GRETINA Gamma-Ray Energy Tracking Array

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arxiv 2104.09986 v1 pith:Y4I3VEH6 submitted 2021-04-17 physics.ins-det astro-ph.IMnucl-ex

classification physics.ins-detastro-ph.IMnucl-ex
keywords gamma-rayarraymodelmeasuredbeamsdevelopedefficienciesgeant4
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

UCGretina, a GEANT4 simulation of the GRETINA gamma-ray tracking array of highly-segmented high-purity germanium detectors is described. We have developed a model of the array, in particular of the Quad Module and the capsules, that gives good agreement between simulated and measured photopeak efficiencies over a broad range of gamma-ray energies and reproduces the shape of the measured Compton continuum. Both of these features are needed in order to accurately extract gamma-ray yields from spectra collected in in-beam gamma-ray spectroscopy measurements with beams traveling at $v/c \gtrsim 0.3$ at the National Superconducting Cyclotron Laboratory and the Facility for Rare Isotope Beams. In the process of developing the model, we determined that millimeter-scale layers of passive germanium surrounding the active volumes of the simulated crystals must be included in order to reproduce measured photopeak efficiencies. We adopted a simple model of effective passive layers and developed heuristic methods of determining passive-layer thicknesses by comparison of simulations and measurements for a single crystal and for the full array. Prospects for future development of the model are discussed.

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