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Precision determination of absolute neutron flux

机译:绝对中子通量的精确测定

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摘要

A technique for establishing the total neutron rate of a highly-collimated monochromatic cold neutron beam was demonstrated using an alpha–gamma counter. The method involves only the counting of measured rates and is independent of neutron cross sections, decay chain branching ratios, and neutron beam energy. For the measurement, a target of 10B-enriched boron carbide totally absorbed the neutrons in a monochromatic beam, and the rate of absorbed neutrons was determined by counting 478 keV gamma rays from neutron capture on 10B with calibrated high-purity germanium detectors. A second measurement based on Bragg diffraction from a perfect silicon crystal was performed to determine the mean de Broglie wavelength of the beam to a precision of 0.024%. With these measurements, the detection efficiency of a neutron monitor based on neutron absorption on 6Li was determined to an overall uncertainty of 0.058%. We discuss the principle of the alpha–gamma method and present details of how the measurement was performed including the systematic effects. We also describe how this method may be used for applications in neutron dosimetry and metrology, fundamental neutron physics, and neutron cross section measurements.
机译:使用α-γ计数器演示了一种用于建立高度准直的单色冷中子束的总中子速率的技术。该方法仅涉及测量速率的计数,并且与中子截面,衰变链分支比和中子束能量无关。为了进行测量,富集了 10 B的碳化硼的目标在单色束中完全吸收了中子,并且通过对捕获的中子捕获的478 keV伽马射线进行计数,确定了吸收中子的速率10 B和校准的高纯度锗探测器。基于来自完美硅晶体的布拉格衍射进行了第二次测量,以确定光束的平均德布罗意波长的精度为0.024%。通过这些测量,确定了基于 6 Li的中子吸收的中子监测器的检测效率,总体不确定度为0.058%。我们讨论了α-γ方法的原理,并详细介绍了如何进行测量,包括系统影响。我们还将描述该方法如何用于中子剂量学和计量学,基本中子物理学和中子截面测量中的应用。

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