棘轮
吸收(声学)
太阳能电池
极限(数学)
辐射传输
实现(概率)
量子点
理想(伦理)
物理
材料科学
光电子学
光学
量子力学
工作(物理)
认识论
数学分析
哲学
统计
数学
作者
Amaury Delamarre,Daniel Suchet,Masakazu Sugiyama,Nicolas Cavassilas,Yoshitaka Okada,Jean‐François Guillemoles
摘要
The Intermediate Band Solar Cell is an advanced concept, which has been predicted to overcome the Shockley-Queisser limit, despite efficiencies remaining below the best single junctions so far. Practical realizations with nanostructures suffer from two intrinsic deficiencies: narrow absorption widths and low radiative efficiencies. We evaluate in this paper the theoretical efficiency expectations with respect to those two properties, and consider in addition the possibility of including an electronic ratchet. We observe that an intermediate band solar cell using a ratchet becomes highly tolerant to non-ideal nanostructures, so that any combination of low absorption and low radiative efficiency becomes compatible with optimized performances above the Shockley-Queisser limit. We conclude that future practical realization may take advantage of quantum wells, which have been less considered so far than quantum dots, due to relatively higher nonradiative recombination rates. Such realizations would take advantage of the higher absorption properties of quantum wells.
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