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Vibrational spectra of the YbB12 kondo insulator

机译:YbB12近藤绝缘子的振动光谱

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The density of phonon states for the YbB12 Kondo insulator is calculated from the inelastic neutron scattering spectra of this compound. It is established that thermal vibrations of rare-earth atoms predominantly occur in the low-energy range. These atoms are most weakly bound in the crystal structure of the YbB12 Kondo insulator. The high-energy part of the vibrational spectrum is determined by thermal vibrations of the boron atoms forming a rigidly connected structure of the compound. It is revealed that the temperature dependence of the intensity of the phonon peak attributed to thermal vibrations of the ytterbium atoms exhibits an anomalous behavior. This circumstance suggests that the magnetoelastic coupling occurring in the structure of the YbB12 Kondo insulator is relatively strong and can contribute to the magnetic excitation spectrum of this compound.
机译:YbB12 Kondo绝缘子的声子态密度由该化合物的非弹性中子散射光谱计算得出。已经确定,稀土原子的热振动主要发生在低能范围内。这些原子在YbB12 Kondo绝缘子的晶体结构中的结合最弱。振动光谱的高能部分取决于形成化合物刚性连接结构的硼原子的热振动。揭示了归因于thermal原子的热振动的声子峰强度的温度依赖性表现出反常行为。这种情况表明,在YbB12 Kondo绝缘子的结构中发生的磁弹性耦合相对较强,并可能有助于该化合物的磁激发光谱。

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