首页> 外文会议>European Photovoltaic Solar Energy Conference >MICROSCOPIC THEORY OF ABSORPTION AND EMISSION IN NANOSTRUCTURED SOLAR CELLS: BEYOND THE GENERALIZED PLANCK FORMULA
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MICROSCOPIC THEORY OF ABSORPTION AND EMISSION IN NANOSTRUCTURED SOLAR CELLS: BEYOND THE GENERALIZED PLANCK FORMULA

机译:纳米结构太阳能电池中的吸收和排放的显微镜理论:超出广义普通普通公式

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Absorption and emission in inorganic bipolar solar cells based on low dimensional structures exhibiting the effects of quantum confinement is investigated in the framework of a comprehensive microscopic theory of the optical and electronic degrees of freedom of the photovoltaic system. In a quantum-statistical treatment based on non-equilibrium Green's functions, the optical transition rates are related to the conservations of electronic currents, providing a quantum version of the balance equations describing the operation of a photovoltaic device. The generalized Planck law used for the determination of emission from an excited semiconductor in quasi-equilibrium is replaced by an expression of extended validity, where no assumptions on the distribution of electrons and photons are made. The theory is illustrated by the numerical simulation of single quantum well diodes at the radiative limit.
机译:基于光伏系统的光学和电子自由度的综合微观理论的框架,研究了基于表现出量子限制的低尺寸结构的无机双极太阳能电池的吸收和发射。在基于非平衡绿色功能的量子统计处理中,光学转换速率与电子电流的节约有关,提供描述光伏器件操作的平衡方程的量子版本。用于测定从激发半导体中的促进半导体发射的广义的普通普通法则被扩展有效性的表达所取代,在那里没有对电子和光子分布的假设进行了假设。该理论通过在辐射极限下单量子阱二极管的数值模拟来说明。

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