首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Carrier transport and electron-lattice interactions of nonlinear optical crystals CdGeP2, ZnGeP2, and CdSiP2
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Carrier transport and electron-lattice interactions of nonlinear optical crystals CdGeP2, ZnGeP2, and CdSiP2

机译:非线性光学晶体CDGEP2,ZnGE2和CDSIP2的载体传输和电子 - 晶格相互作用

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摘要

Terahertz time-domain spectroscopy is employed to investigate temperature-dependent properties of bulk chalcopyrite crystals (CdCeP2, ZnGeP2, and CdSiP2). The complex spectra provide refraction and absorption as a function of temperature, from which electron-phonon coupling and average phonon energies are extracted and linked to the mechanics of the A- and B-site cations. AC conductivity spectra provide carrier densities and electron scattering times, the temperature dependence of which are associated with unintentional shallow dopants. Temperature dependence of t he scattering time is converted into carrier mobility and modeled with microscopic transport mechanisms such as polar optical phonon, acoustic phonons, deformation potential, ionized impurity, and dislocation scattering. Hence, analysis links the terahertz optical and electronic properties to relate microscopic carrier transport and carrier-lattice interactions. (C) 2021 Optical Society of America
机译:采用太赫兹时域光谱法研究了大块黄铜矿晶体(CdCeP2、ZnGeP2和CdSiP2)的温度依赖性。复杂的光谱提供折射和吸收,作为温度的函数,从中提取电子-声子耦合和平均声子能量,并将其与a位和B位阳离子的力学联系起来。交流电导率谱提供了载流子密度和电子散射时间,其温度依赖性与无意的浅掺杂有关。将散射时间的温度依赖性转化为载流子迁移率,并用微观输运机制(如极性光学声子、声学声子、形变势、电离杂质和位错散射)进行建模。因此,分析将太赫兹的光学和电子特性与微观载流子输运和载流子晶格相互作用联系起来。(2021)美国光学学会

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