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Interface Optical Phonon Modes and Frohlich Electron-Phonon Interaction Hamiltonian in a Multi-shell Spherical Nanoheterosystem

机译:多壳球形纳米异质系统中的界面光学声子模式和Frohlich电子-声子相互作用哈密顿量。

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摘要

Under dielectric continuum approximation, interface optical (IO) phonon modes and the Frohlich clectrou-IO phonon interaction Hamiltonian in a multi-shell spherical nanoheterosystem were derived and studied. Numerical calculations on three-layer and four-layer CdS/HgS spherical nanoheterosystems have been performed. Results reveal that there are four IO phonon modes for the three-layer system and six IO phonon modes for the four-layer system. On each interface, there are two IO phonon modes, the frequency of one is between ωTO, CdS and ωLO, CdS, and that of the other is between ωTO, HgS and ωLO, HgS. With the increasing of quantum number l, the frequency of each IO mode approaches one of the two frequency values of the single CdS/HgS heterostructure, and the potential for each IO mode is more and more localized at a certain interface, furthermore, the coupling between the electron-IO phonons becomes weaker.
机译:在介电连续近似下,推导并研究了多壳球形纳米异质体系中的界面光学(IO)声子模和Frohlich电子-IO声子相互作用的哈密顿量。已经对三层和四层CdS / HgS球形纳米异质体系进行了数值计算。结果表明,三层系统有四种IO声子模式,四层系统有六种IO声子模式。在每个接口上,都有两种IO声子模式,一种在ωTO,CdS和ωLO,CdS之间,另一种在ωTO,HgS和ωLO,HgS之间。随着量子数l的增加,每个IO模式的频率接近单个CdS / HgS异质结构的两个频率值之一,并且每个IO模式的电势越来越局限在某个界面,此外,耦合电子-IO声子之间的弱化。

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