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Investigation of Factors Affecting a Potential Worldwide Network of Medical PET Scanners to Monitor the Decay Rate of Lu-176 and Detect Global Radiation Events

机译:影响医疗宠物扫描仪潜在全球网络的因素调查监测LU-176衰减率并检测全球辐射事件

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Medical PET scanners now exist in relatively large numbers around the world suggesting that certain physics experiments might be carried out during off-hours with these machines if organized into a global array of interlinked devices. Workers at Purdue, for example, have claimed to detect a possibly neutrino-induced annual periodicity in the decay rate of CI-36 as the Earth traverses its elliptical orbit around the Sun but these claims remain controversial. A subset array of Lu-based PET scanners might help resolve this matter by measuring for an extended period (years) the decay rate of Lu-176 (38 billion year half life), a radioactive contaminant (2.6% abundance) present in the scintillation crystals of these machines. Night-side PET scanners in time synchrony might also detect and directionally locate other previously unrecognized global radiation events of astronomical origin. The present work identifies several sources of error that could affect such measurements.
机译:医疗宠物扫描仪现在存在于世界各地的相对较大的数字中,表明如果组织成全局互连设备阵列,则可能会在非工作时间内进行某些物理实验。例如,纯粹的工人已声称,由于地球在太阳周围横跨椭圆轨道横穿其椭圆轨道,但这些索赔仍然存在争夺困境,但这些损失率可能会检测到可能的中微子诱导的年度周期性。基于LU的PET扫描仪的子集阵列可能会通过延长时期(年)LU-176(380亿年半衰期)的衰减率,闪烁中存在的放射性污染物(2.6%)来帮助解决这一问题这些机器的晶体。时间同步的夜间宠物扫描仪也可能检测和定向定向以前以前无法识别的天文原产地的全球辐射事件。本工作识别可能影响此类测量的几个错误源。

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