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Spherical neutron polarimetry applied to spin-echo and time-of-flight spectroscopy

机译:球形中子极化技术应用于自旋回波和飞行时间光谱

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The changes in direction of the neutron spin that take place on scattering by a magnetic interaction vector are highly dependent on their relative directions. In some circumstances, without zero-field polarimeter, it is impossible to distinguish between a simple depolarisation and a rotation of the polarisation vector. Motivated by the investigation of chiral magnetic fluctuations, we have implemented the third-generation zero-field polarimeter Cryopad on the neutron spin-echo spectrometer SPAN at the Helmholtz Centre Berlin (HCB). We present the method and the limitations of this novel technique that is now available on IN15 at the ILL The huge progress accomplished with He-3 neutron spin filters/flippers are going to facilitate the exploitation of polarised beams at spallation sources. Zero-field polarimeters like Cryopad are used routinely at several steady-state sources but their design would be inefficient at a pulse source. We have investigated the possibility to implement a zero-field polarimeter on a time-of-flight spectrometer. We propose a design that would lead to a better efficiency and present the finite element calculations.
机译:中子自旋方向的变化是通过磁相互作用矢量在散射中发生的,高度依赖于它们的相对方向。在某些情况下,如果没有零场偏振计,则不可能在简单的去极化和极化向量的旋转之间进行区分。出于研究手性磁波动的动机,我们在柏林亥姆霍兹中心(HCB)的中子自旋回波光谱仪SPAN上实现了第三代零场旋光仪Cryopad。我们介绍了ILL的IN15上现在可以使用的这种新技术的方法和局限性。He-3中子自旋滤光片/夹板取得的巨大进步将促进在散裂源处利用偏振光束。像Cryopad这样的零场旋光仪通常在多个稳态光源上使用,但其设计在脉冲源上效率低下。我们研究了在飞行时间光谱仪上实现零场偏振计的可能性。我们提出了一种可以提高效率的设计,并提出了有限元计算方法。

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