论文标题
校正横向场中子共振旋转回声仪器的像差
Correcting Aberrations of a Transverse-Field Neutron Resonance Spin Echo Instrument
论文作者
论文摘要
中子共振自旋回声(NRSE)技术有可能使用射频(RF)中子自旋 - 流杆来增加中子散射中的傅立叶时间和能量分辨率。然而,由RF肢体之间的中子路径长度变化引起的像差减少了极化。在这里,我们开发和测试了横向静电场磁铁,其中一系列放置在RF弹跳器之间,以校正这些像差。原型校正磁铁均使用McStas(McStas,Monte Carlo Neutron射线追踪软件包)模拟,并使用中子进行测量。原型的结果表明,这种静态场设计纠正了横向野外NRSE畸变。
The neutron resonance spin echo (NRSE) technique has the potential to increase the Fourier time and energy resolution in neutron scattering by using radio-frequency (rf) neutron spin-flippers. However, aberrations arising from variations in the neutron path length between the rf flippers reduce the polarization. Here, we develop and test a transverse static-field magnet, a series of which are placed between the rf flippers, to correct for these aberrations. The prototype correction magnet was both simulated in an NRSE beamline using McStas, a Monte Carlo neutron ray-tracing software package, and measured using neutrons. The results from the prototype demonstrate that this static-field design corrects for transverse-field NRSE aberrations.