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Performance of FBK high-density SiPM technology coupled to Ce:LYSO and Ce:GAGG for TOF-PET

机译:FBK高密度SiPM技术结合Ce:LYSO和Ce:GAGG用于TOF-PET的性能

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摘要

This paper presents the performance, in terms of energy and timing resolution, of high-density silicon photomultipliers (SiPMs) produced at Fondazione Bruno Kessler for time-of-flight positron emission tomography application. The new SiPM technology allows us to produce devices with a small cell size maintaining a high fill factor (FF). The sensors considered in this paper are composed by 30 × 30 μm2 cells with a FF exceeding 70% to cover a total area of 4 × 4 mm2. The SiPM performance was evaluated using two types of scintillators (Ce:LYSO and Ce:GaGG) both with a short height (5 mm) in order to minimize the time jitter caused by light propagation in the crystal. With Ce:LYSO, an energy resolution of 9.0% FWHM at 511 keV and a coincidence resolving time (CRT) of 125 ps FWHM were obtained at -20 °C. With Ce:GaGG, an energy resolution of 6.4% FWHM and a CRT of 260 ps FWHM were achieved at the same temperature. The novel SiPM technology, combining a high PDE with a low correlated noise (i.e., crosstalk and afterpulse), allows us to improve the state-of-the-art of energy and timing resolution with both the tested crystals.
机译:本文介绍了在Fondazione Bruno Kessler生产的用于飞行时间正电子发射断层成像应用的高密度硅光电倍增管(SiPM)的性能(在能量和定时分辨率方面)。新的SiPM技术使我们能够生产出具有小单元尺寸且保持高填充因子(FF)的器件。本文考虑的传感器由30×30μm2的电池组成,其FF超过70%,覆盖的总面积为4×4 mm2。使用两种高度短(5 mm)的闪烁体(Ce:LYSO和Ce:GaGG)对SiPM性能进行了评估,以最大程度地减少由光在晶体中传播引起的时间抖动。使用Ce:LYSO,在511 keV时的能量分辨率为9.0%FWHM,在-20°C时的重合分辨时间(CRT)为125 ps FWHM。使用Ce:GaGG,在同一温度下可获得6.4%FWHM的能量分辨率和260 ps FWHM的CRT。新颖的SiPM技术结合了高PDE和低相关噪声(即串扰和后脉冲),使我们能够通过两种被测晶体来改善最新的能量和时序分辨率。

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