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Investigation of Coded Source Neutron Imaging at the North Carolina State University PULSTAR Reactor

机译:北卡罗来纳州立大学脉冲反应堆编码源中子成像的研究

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A neutron imaging facility is located on beam-tube #5 of the 1-MWth PULSTAR reactor at the North Carolina State University. An investigation has been initiated to explore the application of coded imaging techniques at the facility. Coded imaging uses a mosaic of pinholes to encode an aperture, thus generating an encoded image of the object at the detector. To reconstruct the image recorded by the detector, corresponding decoding patterns are used. The optimized design of coded masks is critical for the performance of this technique and will depend on the characteristics of the imaging beam. In this work, Monte Carlo (MCNP) simulations were utilized to explore the needed modifications to the PULSTAR thermal neutron beam to support coded imaging techniques. In addition, an assessment of coded mask design has been performed. The simulations indicated that a 12 inch single crystal sapphire filter is suited for such an application at the PULSTAR beam in terms of maximizing flux with good neutron-to-gamma ratio. Computational simulations demonstrate the feasibility of correlation reconstruction methods on neutron transmission imaging. A gadolinium aperture with thickness of 500 μm was used to construct the mask using a 38 × 34 URA pattern. A test experiment using such a URA design has been conducted and the point spread function of the system has been measured.
机译:中子成像设施位于北卡罗来纳州立大学的1-Mwth Pulstar反应器的梁管#5上。已启动调查以探讨在设施的应用编码成像技术的应用。编码成像使用针孔的马赛克来编码孔径,从而在检测器处产生对象的编码图像。为了重建由检测器记录的图像,使用相应的解码模式。编码掩模的优化设计对于这种技术的性能至关重要,并将取决于成像光束的特性。在这项工作中,利用Monte Carlo(MCNP)模拟来探讨对Pulstar热中子束的所需修改,以支持编码的成像技术。此外,已经执行对编码掩模设计的评估。模拟表明,根据具有良好中子 - - γ比的磁通,适用于12英寸单晶蓝宝石滤波器在脉冲柱梁上的这种应用。计算仿真证明了相关重建方法对中子传输成像的可行性。使用厚度为500μm的钆孔,用于使用38×34 URA图案构建掩模。已经进行了使用这种URA设计的测试实验,并测量了系统的点传播功能。

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