热载流子太阳能电池中的超快载流子弛豫和非平衡声子

S. Goodnick, C. Honsberg
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引用次数: 6

摘要

第三代光电器件的概念主要依赖于超快载流子弛豫和电子-声子相互作用在极短时间尺度上在纳米结构(如量子阱、线和点)中的动力学。热载流子太阳能电池特别依赖于吸收材料中能量松弛率的降低,其中热载流子通过能量选择接触被提取。本文利用集成蒙特卡罗(EMC)模拟和速率方程模型,研究了不同光激发条件下量子阱热电子太阳能电池的短时间载流子弛豫,以了解影响电池性能的限制因素。我们特别关注热声子在降低能量损失率以获得足够的载流子温度以实现高效性能方面的潜在作用。
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Ultrafast carrier relaxation and nonequilibrium phonons in hot carrier solar cells
Third generation concepts in photovoltaic devices depend critically on the dynamics of ultrafast carrier relaxation and electron-phonon interactions on very short times scales in nanostructures such as quantum wells, wires and dots. Hot carrier solar cells in particular depend on the reduction in the energy relaxation rate in an absorber material, where hot carriers are extracted through energy selective contacts. Here we investigate the short time carrier relaxation in quantum well, hot electron solar cells under varying photoexcitation conditions using ensemble Monte Carlo (EMC) simulation coupled with rate equation models, to understand the limiting factors affecting cell performance. In particular, we focus on the potential role of hot phonons in reducing the energy loss rate in order to achieve sufficient carrier temperature for efficient performance.
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