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The resonant detector and its application to epithermal neutron spectroscopy

机译:共振探测器及其在超热中子光谱中的应用

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New perspectives for epithermal neutron spectroscopy are being opened by the development of the resonant detector (RD) and its use on inverse geometry time of flight spectrometers at spallation sources. The RD was first proposed in the 1980s and was recently brought to a performance level exceeding conventional neutron-sensitive Li-glass scintillator detectors. It features a photon counter coupled to a neutron analyzer foil. Resonant neutron absorption in the foil results in the emission of prompt gamma rays that are detected in the photon counter. The dimensions of the RD set the spatial resolution that can be achieved, ranging from a fraction of a cm to several cm. It can thus be tailored to the construction of detector arrays of different geometry. The main results of the research on this kind of detector are reported leading to the present optimized RD design based on a combination of YAP scintillation photon counter and uranium or gold analyzer foils. This detector has already been selected for application in the upgrade of the VESUVIO spectrometer on ISIS. A special application is the Very Low Angle Detector (VLAD) bank, which will extend the kinematical region for neutron scattering to low momentum transfer (< 10 A~(-1)) whilst still keeping energy transfer > 1 eV, thus allowing new experimental studies in condensed matter systems. The first results of tests made with prototype VLAD detectors are presented, confirming the usefulness of the RD for measurements at scattering angles as low as 2-5°.
机译:共振探测器(RD)的发展及其在散裂源处的反几何飞行时间谱仪上的使用,为超热中子光谱学开辟了新的前景。 RD最初是在1980年代提出的,近来其性能超过了传统的对中子敏感的锂玻璃闪烁体探测器。它具有一个与中子分析仪箔片耦合的光子计数器。箔片中的共振中子吸收会导致发出即时的伽马射线,该伽马射线在光子计数器中检测到。 RD的尺寸设置了可以实现的空间分辨率,范围从几分之一厘米到几厘米不等。因此可以针对不同几何形状的检测器阵列的构造进行定制。据报道,对这种探测器的研究的主要结果导致了基于YAP闪烁光子计数器和铀或金分析仪箔片的组合的当前优化的RD设计。该检测器已被选择用于ISIS上的VESUVIO光谱仪的升级。特殊应用是超低角度检测器(VLAD)库,它将使中子散射的运动学区域扩展到低动量传递(<10 A〜(-1)),同时仍保持能量传递> 1 eV,从而允许进行新的实验凝聚态系统研究。给出了使用原型VLAD检测器进行测试的第一批结果,证实了RD在低至2-5°散射角下进行测量的有用性。

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