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High-efficiency AlxGa1-xAs/GaAs cathode for photon-enhanced thermionic emission solar energy converters

机译:用于光子增强的热离子发射太阳能转换器的高效ALXGA1-XAS / GAAS阴极

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摘要

A theoretical emission model for AlxGa1-xAs/GaAs cathode with complex structure based on photon-enhanced thermionic emission is developed by utilizing one-dimensional steady-state continuity equations. The cathode structure comprises a graded-composition AlxGa1-xAs/GaAs window layer and an exponential-doping GaAs absorber layer. In the deduced model, the physical properties changing with the Al composition are taken into consideration. Simulated current-voltage characteristics are presented and some important factors affecting the conversion efficiency are also illustrated. Compared with the graded-composition and uniform-doping cathode structure, and the uniform-composition and uniform-doping cathode structure, the graded-composition and exponential-doping cathode structure can effectively improve the conversion efficiency, which is ascribed to the twofold built-in electric fields. More strikingly, this graded bandgap structure is especially suitable for photon-enhanced thermionic emission devices since a higher conversion efficiency can be achieved at a lower temperature. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过利用一维稳态连续性方程,开发了基于光子增强的热离子发射的复合结构的Alxga1-XAS / GaAs阴极的理论发射模型。阴极结构包括分级组合物AlxGA1-XAS / GaAs窗口层和指数掺杂GaAs吸收层。在推导的模型中,考虑使用Al组成的物理性质。还示出了模拟电流电压特性,并且还示出了影响转换效率的一些重要因素。与分级组成和均匀掺杂的阴极结构相比,以及均匀 - 组合物和均匀掺杂的阴极结构,分级组合物和指数掺杂的阴极结构可以有效地提高转换效率,这归因于双重构造 - 在电场。更令人醒目地,这种分级带隙结构特别适用于光子增强的热离子发射装置,因为可以在较低的温度下实现更高的转换效率。 (c)2017年Elsevier B.V.保留所有权利。

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