论文标题
跨同位素界面的声子过渡
Phonon transition across an isotopic interface
论文作者
论文摘要
天然材料通常由同位素混合物组成,为此,不同的同位素比可以导致不同的材料特性,例如导热率和成核过程。但是,同位素界面的知识在很大程度上尚未探索,这主要是由于原子量表的同位素识别和性质测量所面临的挑战。在这里,通过在扫描透射电子显微镜中使用单色电子损失光谱,我们在人工H-10亿h110亿h11亿HETROSCTURETURE具有子单元分辨率的人工H 10亿h11亿HETROSCTRUCTURE上揭示了动量转移依赖性的晶格振动行为。我们发现逐渐以广泛的过渡方式逐渐发现了同位素界面的振动能量变化,这表明界面处的平面外光语音子的强烈离域化。此外,我们识别Brillouin区中心附近的声子具有〜3.34 nm(10个原子层)的过渡状态,而在〜1.66 nm(5个原子层)的布里鲁因区边界过渡的声子。我们建议在接口处的同位素诱导的电荷效应是针对独特的离域行为的。此外,振动能的原子内层变化也对动量转移敏感,因此在界面上,它取决于动量转移和质量变化。同位素界面处揭示的晶格振动行为提供了新的见解,以了解对天然材料中特性的同位素影响。
Natural materials usually consist of isotopic mixtures, for which different isotopic ratios can lead to distinct material properties such as thermal conductivity and nucleation process. However, the knowledge of isotopic interface remains largely unexplored mainly due to the challenges in isotopic identification and property measurement at an atomic scale. Here, by using monochromated electron energy-loss spectroscopy in a scanning transmission electron microscope, we reveal momentum-transfer-dependent lattice vibration behavior at an artificial h-10BN/h-11BN heterostructure with sub-unit-cell resolution. We find the vibrational energy changes across the isotopic interface gradually, featuring a wide transition regime, which suggests strong delocalization of the out-of-plane optical phonons at the interface. In addition, we identify phonons near the Brillouin zone center have a transition regime ~3.34 nm (10 atomic layers), whereas phonons at the Brillouin zone boundary transition in ~1.66 nm (5 atomic layers). We propose that the isotope-induced charge effect at the interface accounts for the distinct delocalization behavior. Moreover, intra-atomic layer variation of vibration energy is also sensitive to the momentum transfer, thus at the interface it depends on both of momentum transfer and mass change. The revealed lattice vibration behavior at an isotopic interface provides new insights to understand the isotopic effects on properties in natural materials.