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首页> 外文期刊>IEEE Transactions on Electron Devices >Numerical simulation of charge transfer and light emission in SrS:Ce thin-film electroluminescent devices
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Numerical simulation of charge transfer and light emission in SrS:Ce thin-film electroluminescent devices

机译:SrS:Ce薄膜电致发光器件中电荷转移和发光的数值模拟

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摘要

When an AC voltage is applied to a thin-film electroluminescent device with an SrS:Ce phosphor layer, the current flowing through the phosphor layer and the emitted light can be complex functions of time. In order to explain the observed current and light waveforms, a numerical model has been constructed for the electrical and optical behavior of such a device. This model is based on the tunneling of electrons from the phosphor-insulator interface, multiplication of the electron current and creation of positive space charge in the high field region, recombination of electrons with the positive charges in the low-field region, and a back-flow of electrons from the anodic interface when the field there changes sign. The rather simple model is able to simulate a number of features observed in current and light characteristics quite well. It could serve as a reference for the interpretation of new experimental results.
机译:当将交流电压施加到具有SrS:Ce荧光粉层的薄膜电致发光器件时,流经荧光粉层和发射光的电流可能是时间的复杂函数。为了解释观察到的电流和光波形,已经为这种装置的电和光行为建立了数值模型。该模型基于电子从磷光体-绝缘体界面的隧穿,电子电流的倍增以及高场区域中正电荷的产生,低场区域中电子与正电荷的复合以及反向-当电场改变符号时,来自阳极界面的电子流。相当简单的模型能够很好地模拟在电流和光特性中观察到的许多特征。它可以作为解释新实验结果的参考。

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