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Raman scattering of longitudinal-optical-phonon-plasmon coupling in Cl-doped ZnSe under high pressure

机译:掺Cl的ZnSe在高压下的纵向光子-声子-等离子体耦合的拉曼散射

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摘要

The vibrational, electronic, and crystalline properties of n-type chlorine-doped ZnSe (ZnSe:Cl) layers with a carrier concentration from 8.2 × 10~(15) to 1.8 × 10~(18) cm~(-3) are studied by Raman spectroscopy. The spectral line shapes of the longitudinal-optical-phonon and plasmon coupling mode are analyzed using the Raman scattering efficiency and the dielectric function to obtain the electron densities and mobility. The splitting of the transverse-optical (TO) phonon and the redshift of the chlorine-related impurity vibration mode are clearly observed when pressure is applied. The semiconductor-to-metal phase transition pressure of ZnSe:Cl layers declines as the carrier concentration increases, indicating that n-type doping reduces crystal stability. Additionally, the pressure-induced weakening of the longitudinal-optical-phonon-plasmon coupling efficiency suggests that pressure tends to degrade the n-type characteristic of ZnSe:Cl because of the emergence of the new deep donorlike state.
机译:研究了载流子浓度为8.2×10〜(15)至1.8×10〜(18)cm〜(-3)的n型掺杂氯的ZnSe(ZnSe:Cl)层的振动,电子和晶体性质。通过拉曼光谱法。利用拉曼散射效率和介电函数分析了纵向光子与声子耦合模式的谱线形状,从而获得了电子密度和迁移率。当施加压力时,可以清楚地观察到横向光学(TO)声子的分裂和与氯有关的杂质振动模式的红移。 ZnSe:Cl层的半导体到金属的相变压力随着载流子浓度的增加而降低,表明n型掺杂降低了晶体的稳定性。另外,压力引起的纵向光子-声子-等离子体耦合效率的减弱表明,由于新的深施主态的出现,压力趋于降低ZnSe:Cl的n型特性。

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