Beddrich Lukas, Jochum Johanna K, Bender Philipp, Spitz Leonie, Wendl Andreas, Franz Christian, Busch Sebastian, Juranyi Fanni, Pfleiderer Christian, Soltwedel Olaf
Heinz Maier-Leibnitz Zentrum (MLZ), Technische Universität München, D-85748 Garching, Germany.
PSI Center for Neutron and Muon Sciences, CH-5232 Villigen PSI, Switzerland.
J Appl Crystallogr. 2025 Jun 16;58(Pt 4):1122-1137. doi: 10.1107/S1600576725003620. eCollection 2025 Aug 1.
We report a comparison of modulation of intensity with zero effort (MIEZE), a neutron spin-echo technique, and neutron time-of-flight (ToF) spectroscopy, a conventional neutron scattering method. The evaluation of the respective recorded signals, which can be described by the intermediate scattering function (, τ) (MIEZE) and the dynamic structure factor (, ) (ToF), involves a Fourier transformation that requires detailed knowledge of the detector efficiency, instrumental resolution, signal background and range of validity of the spin-echo approximation. It is demonstrated that data obtained from pure water align well within the framework presented here, thereby extending the applicability of the MIEZE technique beyond the spin-echo approximation and emphasizing the complementarity of the two methods. Computational methods, such as molecular dynamics simulations, are highlighted as essential for enhancing the understanding of complex systems. Together, MIEZE and ToF provide a powerful framework for investigating dynamic processes across different time and energy domains, with particular attention required to ensure identical sample geometries for meaningful comparisons.
我们报告了零努力强度调制(MIEZE,一种中子自旋回波技术)与中子飞行时间(ToF)光谱(一种传统中子散射方法)的比较。对各自记录信号的评估,在MIEZE中可用中间散射函数 (,τ)描述,在ToF中可用动态结构因子(,)描述,这涉及到傅里叶变换,而该变换需要详细了解探测器效率、仪器分辨率、信号背景以及自旋回波近似的有效性范围。结果表明,从纯水获得的数据在此处提出的框架内吻合良好,从而将MIEZE技术的适用性扩展到自旋回波近似之外,并强调了这两种方法的互补性。诸如分子动力学模拟等计算方法被强调为增强对复杂系统理解的关键。总之,MIEZE和ToF为研究不同时间和能量域内的动态过程提供了一个强大的框架,为进行有意义的比较,需要特别注意确保样品几何形状相同。