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Spatially and Angularly Resolved Cathodoluminescence Study of Single ZnO Nanorods

机译:单个ZnO纳米棒的空间和角度分辨阴极发光研究

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Single ZnO nanorods were studied with cathodoluminescence at high spatial and angular resolution. A newly developed luminescence detector consisting a fiber probe controlled by a nano-manipulator is attached to a scanning electron microscope to carry out the cathodoluminescence measurements. Excitonic emission from the sidewalls and redshifted near band edge emission guided along the nanorod axis are observed as the fiber probe axis is aligned to be perpendicular and parallel to the nanorod axis, respectively, demonstrating the angular resolving power of the experimental setup and waveguiding behavior of the nanorods. High spatial resolution cathodoluminescence measurement shows that the near band edge emission can propagate parallel and perpendicular to the nanorod axis and an increased propagation distance results in more redshift of the guided luminescence. In addition, the high spatial resolution and temperature dependent cathodoluminescence measurements demonstrate the important role of free exciton-longitudinal optical phonon interaction in the waveguiding behavior and the propagation of the near band edge emission in ZnO nanorods.
机译:单一的ZnO纳米棒在高空间和角分辨率下都具有阴极发光特性。将由纳米操纵器控制的纤维探针组成的新开发的发光检测器连接到扫描电子显微镜以进行阴极发光测量。当光纤探针轴分别与纳米棒轴垂直和平行排列时,观察到了来自侧壁的激子发射和沿着纳米棒轴引导的红移近带边缘发射,这证明了实验装置的角分辨能力和波导的行为。纳米棒。高空间分辨率阴极发光测量显示,近带边缘发射可以平行和垂直于纳米棒轴传播,并且增加的传播距离导致引导的发光发生更多的红移。此外,高空间分辨率和依赖温度的阴极发光测量结果表明,自由激子-纵向光学声子相互作用在ZnO纳米棒的波导行为和近带边缘发射的传播中具有重要作用。

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