论文标题
双螺旋抗铁磁铁FEP中的晶格动力学
Lattice dynamics in the double-helix antiferromagnet FeP
论文作者
论文摘要
我们通过高分辨率的飞行时间中子光谱和AB-Initio计算,对双螺旋抗磁铁FEP中的晶格动力学进行了全面研究。声子可以与非共线磁体中的磁激发杂交,从而显着影响其性质。我们观察到了丰富的声子激发频谱,最高可达$ \ sim $ 50 mev。我们对布里渊区的所有高对称点和高对称方向的观察到的光谱进行了详细分析。我们表明,DFT计算定量捕获观察到的声子的基本特征,包括分散和散射强度。通过利用理论和数据之间的详细强度比较,我们能够识别大多数观察到的模式的位移向量。 DFT预测与实验结果之间的总体出色一致性在$ y $点下的最低模式分解,其能量低于$ \ sim $ 13%。本研究提供了有关FEP中晶格动力学的重要信息,并证明了DFT对新型压力诱导的现象(例如MNP和CRA)的适用性。
We present a comprehensive investigation of lattice dynamics in the double-helix antiferromagnet FeP by means of high-resolution time-of-flight neutron spectroscopy and ab-initio calculations. Phonons can hybridize with the magnetic excitations in noncollinear magnets to significantly influence their properties. We observed a rich spectrum of phonon excitations, which extends up to $\sim$50 meV. We performed detailed analysis of the observed and calculated spectra for all high-symmetry points and high-symmetry directions of the Brillouin zone. We show that the DFT calculations quantitatively capture the essential features of the observed phonons, including both dispersions and scattering intensities. By making use of the detailed intensity comparison between the theory and the data, we were able to identify displacement vectors for the majority of the observed modes. The overall excellent agreement between the DFT predictions and the experimental results breaks down for the lowest mode at the $Y$-point, whose energy is lower than calculated by $\sim$13%. The present study provides vital information on the lattice dynamics in FeP and demonstrates applicability of the DFT to novel pressure-induced phenomena in related materials, such as MnP and CrAs.