极化子
准粒子
极化率
电子
晶格振动
凝聚态物理
物理
格子(音乐)
离子键合
声子
量子力学
离子
超导电性
分子
声学
作者
Cesare Franchini,Michele Reticcioli,Martin Setvín,Ulrike Diebold
标识
DOI:10.1038/s41578-021-00289-w
摘要
Polarons are quasiparticles that easily form in polarizable materials due to the coupling of excess electrons or holes with ionic vibrations. These quasiparticles manifest themselves in many different ways and have a profound impact on materials properties and functionalities. Polarons have been the testing ground for the development of numerous theories, and their manifestations have been studied by many different experimental probes. This Review provides a map of the enormous amount of data and knowledge accumulated on polaron effects in materials, ranging from early studies and standard treatments to emerging experimental techniques and novel theoretical and computational approaches. Polarons — quasiparticles arising from the interaction of electrons with lattice vibrations — strongly influence materials properties. This Review provides a map of the theoretical models and experimental techniques used to study polarons in materials, presenting paradigmatic examples of different types of polarons and polaron-driven phenomena.
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