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固态阴极射线发光以及其两个发光峰的特性

Solid state cathodoluminescence and the properties of its two emission peaks

中文摘要英文摘要

自发现固态阴极射线发光,我们对其进行了证实,排除了所有的假象、进行了交叉证明并且研究了它的一般特性。随着施加电压的增加,光谱表现出向短波方向移动,并且三个电压区被区分开,在低压区出现长波的发射,在中间区域出现短波与长波的混合发射,在高压区仅有短波的发射。 这种光谱的移动机制依赖于激子的场致离化,这种作用起源于能带模型的应用而非分子激子理论。通过发光强度的频域特性来估计发光寿命的方法研究了固态阴极射线中两个发光峰的暂态行为。短波峰的发光峰的寿命是5 ms,长波发光峰的寿命小于0.05 ms。

We discovered solid state cathodoluminescence (SSCL). For its identification we excluded all of artifacts, carried out its cross proof and studied its generality. Its spectrum is characterized by the appearance of short wavelength peak when the applied voltage is increased. Three voltage ranges are distinguished, in the lower voltage range we have the long wavelength emission, in the middle range we have both long and short wavelength emissions, and in the higher voltage range we have only the short wavelength emission. The mechanism of this spectral shift lies in the electrical field ionization of excitons. This effect initiates the applicability of band model besides molecular excitons theory. The temporal behaviors of both peaks in SSCL are studied with a method of estimating lifetime by means of frequency dependence on intensity. The lifetime of short wavelength emission is found to be 5 ms and that of long wavelength emission is less than 0.05ms.

徐叙瑢

物理学光电子技术真空电子技术

激子场离化,辐射复合,波形

exciton field ionization,radiative recombination,waveform

徐叙瑢.固态阴极射线发光以及其两个发光峰的特性[EB/OL].(2005-12-13)[2025-08-19].http://www.paper.edu.cn/releasepaper/content/200512-330.点此复制

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