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Sistemas Nanoestruturados: Heteroestruturas Quasi-Periódicas de Nitretos e Cálculos Ab initio em PolimorfosCaCO3

机译:纳米结构系统:氮化物的准周期性异质结构和多晶型物的从头算起碳酸钙

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摘要

The physical properties and the excitations spectrum in oxides and semiconductors materials are presented in this work, whose the first part presents a study on the confinement of optical phonons in artificial systems based on III-V nitrides, grown in periodic and quasiperiodic forms. The second part of this work describes the Ab initio calculations which were carried out to obtain the optoeletronic properties of Calcium Oxide (CaO) and Calcium Carbonate (CaCO3) crystals. For periodic and quasi-periodic superlattices, we present some dynamical properties related to confined optical phonons (bulk and surface), obtained through simple theories, such as the dielectric continuous model, and using techniques such as the transfer-matrix method. The localization character of confined optical phonon modes, the magnitude of the bands in the spectrum and the power laws of these structures are presented as functions of the generation number of sequence.The ab initio calculations have been carried out using the CASTEP software (Cambridge Total Sequential Energy Package), and they were based on ultrasoft-like pseudopotentials and Density Functional Theory (DFT). Two di®erent geometry optimizations have been e®ectuated for CaO crystals and CaCO3 polymorphs, according to LDA (local density approximation) and GGA (generalized gradient approximation) approaches, determining several properties, e. g. lattice parameters, bond length, electrons density, energy band structures, electrons density of states, e®ective masses and optical properties, such as dielectric constant, absorption, re°ectivity, conductivity and refractive index. Those results were employed to investigate the confinement of excitons in spherical Si@CaCO3 and CaCO3@SiO2 quantum dots and in calcium carbonate nanoparticles, and were alsoemployed in investigations of the photoluminescence spectra of CaCO3 crystal
机译:这项工作介绍了氧化物和半导体材料的物理性质和激发光谱,其第一部分介绍了对以周期性和拟周期形式生长的基于III-V氮化物的人造声光系统的限制。这项工作的第二部分描述了从头算的计算,这些计算是为了获得氧化钙(CaO)和碳酸钙(CaCO3)晶体的光电性能而进行的。对于周期和准周期超晶格,我们介绍了与受限光子(体和表面)有关的一些动力学特性,这些特性是通过简单的理论(例如介电连续模型)以及使用转移矩阵法等技术获得的。约束光声子模式的定位特性,谱带的幅度以及这些结构的功率定律作为序列的代数的函数给出。使用CASTEP软件(Cambridge Total顺序能量包),它们基于类似超软的伪势和密度泛函理论(DFT)。根据LDA(局部密度近似)和GGA(广义梯度近似)方法,对CaO晶体和CaCO3多晶型物进行了两种不同的几何优化,确定了几种特性。 G。晶格参数,键长,电子密度,能带结构,状态的电子密度,有效质量和光学性质,例如介电常数,吸收率,反射率,电导率和折射率。这些结果被用于研究激子在球形Si @ CaCO3和CaCO3 @ SiO2量子点中以及在碳酸钙纳米粒子中的约束,并被用于研究CaCO3晶体的光致发光光谱

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