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首页> 外文期刊>Physical review letters >Topological Solitons versus Nonsolitonic Phase Defects in a Quasi-One-Dimensional Charge-Density Wave
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Topological Solitons versus Nonsolitonic Phase Defects in a Quasi-One-Dimensional Charge-Density Wave

机译:一维电荷密度波中的拓扑孤子与非孤子相缺陷

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摘要

We investigated phase defects in a quasi-one-dimensional commensurate charge-density wave (CDW) system, an In atomic wire array on Si(111), using low temperature scanning tunneling microscopy. The unique fourfold degeneracy of the CDW state leads to various phase defects, among which intrinsic solitons are clearly distinguished. The solitons exhibit a characteristic variation of the CDW amplitude with a coherence length of about 4 nm, as expected from the electronic structure, and a localized electronic state within the CDW gap. While most of the observed solitons are trapped by extrinsic defects, moving solitons are also identified and their novel interaction with extrinsic defects is disclosed.
机译:我们使用低温扫描隧道显微镜研究了准一维相称电荷密度波(CDW)系统(Si(111)上的In原子线阵列)中的相缺陷。 CDW状态的独特的四倍简并性导致各种相缺陷,其中固有的孤立子被清楚地区分。孤子表现出CDW振幅的特征变化,如电子结构所预期的,相干长度约为4 nm,并且CDW间隙内存在局部电子状态。虽然大多数观察到的孤子都被外部缺陷所困,但移动的孤子也得到了识别,并且揭示了它们与外部缺陷的新颖相互作用。

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