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    • 3. 发明申请
    • Single plane compton camera
    • 单机康普顿相机
    • US20120043467A1
    • 2012-02-23
    • US12806621
    • 2010-08-17
    • Andrey GueorguievJuergen SteinJeffrey R. PrestonLeslie D. HoyClaus-Michael Herbach
    • Andrey GueorguievJuergen SteinJeffrey R. PrestonLeslie D. HoyClaus-Michael Herbach
    • G01T1/20G01T1/26
    • G01T1/2907
    • A single plane Compton telescope uses a coplanar array of detectors to determine the direction of a radiation source. Detector materials and dimensions may have comparable Compton scattering and photoelectric absorption probabilities, so scattered photons have a high probability of escape from the detector in which the initial interaction occurs, while being absorbed in adjacent detectors. Energy information from coincident interactions between two detectors defines a bearing plane that contains the radiation source; by comparing these interactions in two non-parallel directions, the source is localized to a line representing the intersection of two bearing planes. Energies may be summed to determine the initial photon energy. The array may be of a single detector type or an arrangement of different detector types. The array may be a stationary, planar configuration of at least three detectors, or a linear array of at least two detectors that is rotatable within a selected plane.
    • 单平面康普顿望远镜使用共面阵列的探测器来确定辐射源的方向。 检测器的材料和尺寸可能具有相当的康普顿散射和光电吸收概率,所以散射的光子在发生初始相互作用的同时被检测器逸出的可能性很高,同时被邻近的检测器吸收。 两个检测器之间重合相互作用的能量信息定义了包含辐射源的支承平面; 通过在两个非平行方向上比较这些相互作用,源被定位到表示两个轴承平面交点的线。 能量可以相加以确定初始光子能量。 阵列可以是单个检测器类型或不同检测器类型的布置。 阵列可以是至少三个检测器的固定的平面配置,或者可以在所选择的平面内旋转的至少两个检测器的线性阵列。