聚乙炔
物理
退化(生物学)
极化子
孤子
一般化
基态
非线性系统
聚合物
班级(哲学)
线型聚合物
理论物理学
统计物理学
量子力学
电子
核磁共振
数学分析
人工智能
生物
生物信息学
计算机科学
数学
作者
Alan J. Heeger,Steven Kivelson,J. R. Schrieffer,W. P. Su
标识
DOI:10.1103/revmodphys.60.781
摘要
Self-localized nonlinear excitations (solitons, polarons, and bipolarons) are fundamental and inherent features of quasi-one-dimensional conducting polymers. Their signatures are evident in many aspects of the physical and chemical properties of this growing class of novel materials. As a result, these polymers represent an opportunity for exploring the novel phenomena associated with topological solitons and their linear confinement which results from weakly lifting the ground-state degeneracy. The authors review the theoretical models that have been developed to describe the physics of polyacetylene and related conducting polymers and summarize the relevant experimental results obtained for these materials. An attempt is made to assess the validity of the soliton model of polyacetylene and its generalization to related systems in which the ground-state degeneracy has been lifted.
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