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Basis for calculating cross sections for nuclear magnetic resonance spin-modulated polarized neutron scattering

机译:核磁共振自旋调制极化中子散射截面计算的基础

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In this work we study the potential for utilizing the scattering of polarized neutrons from nuclei whose spin has been modulated using nuclear magnetic resonance (NMR). From first principles, we present an in-depth development of the differential scattering cross sections that would arise in such measurements from a hypothetical target system containing nuclei with non-zero spins. In particular, we investigate the modulation of the polarized scattering cross sections following the application of radio frequency pulses that impart initial transverse rotations to selected sets of spin-1/2 nuclei. The long-term aim is to provide a foundational treatment of the scattering cross section associated with enhancing scattering signals from selected nuclei using NMR techniques, thus employing minimal chemical or isotopic alterations, so as to advance the knowledge of macromolecular or liquid structure. Published by AIP Publishing.
机译:在这项工作中,我们研究了利用极化中子从自旋已使用核磁共振(NMR)进行调制的原子核中散射的潜力。从第一原理出发,我们提出了差分散射截面的深入发展,这种散射将在假设的目标系统中包含非零自旋核的测量中出现。特别是,我们研究了施加射频脉冲后对极化散射截面的调制,这些脉冲将初始横向旋转赋予所选的自旋1/2核组。长期目标是为使用NMR技术增强与散射来自选定核的散射信号相关的散射截面提供基础处理,从而采用最小的化学或同位素改变,从而增进对大分子或液体结构的了解。由AIP Publishing发布。

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