非弹性中子散射
斩波器
中子光谱学
光学
互易晶格
中子
分光计
物理
中子散射
色散(光学)
计算物理学
分辨率(逻辑)
非弹性散射
材料科学
散射
核物理学
计算机科学
人工智能
电压
衍射
量子力学
作者
Jiao Lin,Gabriele Sala,M. B. Stone
摘要
Direct-geometry time-of-flight chopper neutron spectroscopy is instrumental in studying dynamics in liquid, powder, and single crystal systems. We report here that real-space techniques in optical imagery can be adapted to obtain reciprocal-space super resolution dispersion for phonon or magnetic excitations from single-crystal neutron spectroscopy measurements. The procedure to reconstruct super-resolution energy dispersion of excitations relies on an accurate determination of the momentum and energy-dependent point spread function and a dispersion correction technique inspired by an image disparity calculation technique commonly used in stereo imaging. Applying these methods to spinwave dispersion data from a virtual neutron experiment demonstrates ∼5-fold improvement over nominal energy resolution.
科研通智能强力驱动
Strongly Powered by AbleSci AI