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Defect induced changes on the excitation transfer dynamics in ZnS/Mn nanowires

机译:缺陷诱导的ZnS / Mn纳米线中激发转移动力学的变化

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摘要

Transients of Mn internal 3d5 luminescence in ZnS/Mn nanowires are strongly non-exponential. This non-exponential decay arises from an excitation transfer from the Mn ions to so-called killer centers, i.e., non-radiative defects in the nanostructures and is strongly related to the interplay of the characteristic length scales of the sample such as the spatial extensions, the distance between killer centers, and the distance between Mn ions. The transients of the Mn-related luminescence can be quantitatively described on the basis of a modified Förster model accounting for reduced dimensionality. Here, we confirm this modified Förster model by varying the number of killer centers systematically. Additional defects were introduced into the ZnS/Mn nanowire samples by irradiation with neon ions and by varying the Mn implantation or the annealing temperature. The temporal behavior of the internal Mn2+ (3d5) luminescence is recorded on a time scale covering almost four orders of magnitude. A correlation between defect concentration and decay behavior of the internal Mn2+ (3d5) luminescence is established and the energy transfer processes in the system of localized Mn ions and the killer centers within ZnS/Mn nanostructures is confirmed. If the excitation transfer between Mn ions and killer centers as well as migration effects between Mn ions are accounted for, and the correct effective dimensionality of the system is used in the model, one is able to describe the decay curves of ZnS/Mn nanostructures in the entire time window.
机译:ZnS / Mn纳米线中Mn内部3d 5 发光的瞬态是强烈非指数的。这种非指数衰减是由Mn离子到所谓的杀手中心的激发转移引起的,即纳米结构中的非辐射缺陷,并且与样品特征长度尺度的相互作用(例如空间扩展)密切相关,杀手中心之间的距离以及Mn离子之间的距离。 Mn相关发光的瞬态可以基于修正的Förster模型(减少尺寸)来定量描述。在这里,我们通过系统地改变杀手中心的数量来确认这种修正的Förster模型。通过用氖离子辐照并通过改变Mn的注入或退火温度,将额外的缺陷引入ZnS / Mn纳米线样品中。内部Mn 2+ (3d 5 )发光的时间行为记录在几乎覆盖四个数量级的时间尺度上。建立了缺陷浓度与内部Mn 2+ (3d 5 )发光的衰变行为之间的相关性,并确定了局部Mn离子和杀灭剂体系中的能量转移过程。 ZnS / Mn纳米结构内的中心被确认。如果考虑到Mn离子与杀手中心之间的激发转移以及Mn离子之间的迁移效应,并且在模型中使用了正确的系统有效尺寸,则可以描述ZnS / Mn纳米结构的衰减曲线。整个时间窗口。

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