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Inelastic neutron scattering and lattice-dynamical calculations of BaFe2As2

机译:BaFe2As2的非弹性中子散射和晶格动力学计算

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摘要

We report here extensive measurements of the temperature dependence of phonon density of states of BaFe2As2, the parent compound of the FeAs-based superconductors, using inelastic neutron scattering. The experiments were carried out on the thermal time-of-flight neutron spectrometer IN4 at the Institut Laue Langevin on a polycrystalline sample. There is no appreciable change in the spectra between T=10 and 200 K, although the sample undergoes a magnetic as well as a tetragonal-to-orthorhombic structural phase transition at 140 K. This indicates a rather harmonic phonon system. Shell-model lattice-dynamical calculations based on interatomic potentials are carried out to characterize the phonon data. The calculations predict a shift of the Ba phonons to higher energies at 4 GPa. The average energy of the phonons of the Ba sublattice is also predicted to increase on partial substitution of Ba by K to Ba0.6K0.4. The calculations show good agreement with the experimental phonon spectra and also with the specific-heat data from the literature.
机译:我们在此报告了使用非弹性中子散射对FeFe基超导体母体化合物BaFe2As2的声子密度与温度的关系的广泛测量。实验是在Laue Langevin研究所的热飞行时间中子光谱仪IN4上对多晶样品进行的。在T = 10和200 K之间,光谱没有明显变化,尽管样品在140 K处经历了磁以及从四方到正交的结构相变。这表明声子系统相当谐和。进行了基于原子间电势的壳模型晶格动力学计算,以表征声子数据。该计算预测在4 GPa时Ba声子会向更高的能量移动。预计Ba子晶格声子的平均能量也会随着Ba被K部分取代为Ba0.6K0.4而增加。计算结果与实验声子光谱以及文献中的比热数据显示出良好的一致性。

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