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首页> 外文期刊>Measurement Science & Technology >Application of a neutron-polarizing device based on a quadrupole magnet to a focusing SANS instrument with a magnetic neutron lens
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Application of a neutron-polarizing device based on a quadrupole magnet to a focusing SANS instrument with a magnetic neutron lens

机译:基于四极磁体的中子极化装置在带磁中子透镜的聚焦SANS仪器中的应用

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摘要

A magnetic neutron lens based on a sextupole magnet is considered an ideal neutron-focusing device for focusing-geometry small-angle neutron scattering (FSANS) instruments using polarized neutrons. However, the magnetic neutron lens functions both as focusing and defocusing lens for positive and negative polarity neutrons, respectively. Negative polarity neutrons are defocused by the lens and spread over the detector of the instrument, resulting in an increase of the background level. Therefore, a neutron-polarizing device with a very high polarizing efficiency P greater than or similar to 0.99 is required to be employed together with the magnetic neutron lens. A neutron-polarizing device based on a quadrupole magnet has a very high polarizing efficiency P greater than or similar to 0.99, which is sufficient for the application to the FSANS instrument. In this study, we installed the quadrupole magnet in the FSANS instrument SANS-J-II and investigated its performance with respect to the conventional magnetic super-mirror polarizers of the FSANS instrument.
机译:基于六极磁体的磁中子透镜被认为是使用极化中子聚焦几何小角度中子散射(FSANS)仪器的理想中子聚焦装置。然而,磁中子透镜分别用作正负中子的聚焦透镜和散焦透镜。负极性中子被透镜散焦,并散布在仪器的检测器上,从而导致背景水平升高。因此,需要与磁中子透镜一起使用具有大于或等于0.99的非常高的极化效率P的中子极化装置。基于四极磁体的中子极化装置具有非常高的极化效率P,大于或等于0.99,这足以应用于FSANS仪器。在这项研究中,我们在FSANS仪器SANS-J-II中安装了四极磁体,并研究了其相对于FSANS仪器的常规磁性超镜偏振器的性能。

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