论文标题
钻石乘二颗粒的微结构和光发射特性
Microstructural and Optical Emission Properties of Diamond Multiply Twinned Particles
论文作者
论文摘要
乘双颗粒MTPS是引人入胜的晶体学实体,其源自其对称性和循环结构的许多可控特性。我们研究的重点是钻石MTP托管光学活跃缺陷,对象显示出很高的新兴光电和量子设备的应用潜力。在这项工作中,我们讨论了生长机制以及MTP的微观结构和光学特性,这些MTP在特定晶体不规则上汇总了硅面积复合物的高密度。事实证明,硅杂质通过在100个常规八面体晶粒的100个方面的渗透双胞胎形成密集形成,从而促进了MTP的迅速生长。我们还表明,嵌入在双边界中的SI色中心的零音波发射在基于MTP的光发射器件的光 - 和电发光光谱中占主导地位。
Multiply twinned particles, MTPs, are fascinating crystallographic entities with a number of controllable properties originating from their symmetry and cyclic structure. In the focus of our studies are diamond MTPs hosting optically active defects, objects demonstrating a high application potential for emerging optoelectronic and quantum devices. In this work, we discuss the growth mechanisms along with the microstructural and optical properties of the MTPs aggregating high-density of silicon-vacancy complexes on the specific crystal irregularities. It is demonstrated that the silicon impurities incite a rapid growth of MTPs via intensive formation of penetration twins on 100 facets of regular octahedral grains. We also show that the zero-phonon-line emission from the Si color centers embedded in the twin boundaries dominates in photo- and electroluminescence spectra of the MTP-based light-emitting devices defining their steady-state optical properties.