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Tensor network simulation of dynamics and finite-temperature quantum system
物理系colloquium:重离子加速器发展前沿和重大应用
Large N theory of critical Fermi surface
Temporal Entanglement in Dual-Unitary Clifford CircuitswithProbabilistic Mea...
报告题目:
有机半导体中的单态裂分现象研究进展
 报告人:
张春峰 副教授
微纳光学与超快光学实验室
南京大学物理学院
报告时间:
2015-07-17 09:30
报告地点:
化学系何添楼406会议室
主办单位:
化学系帅志刚课题组
  简介:
摘要:
Due to the broadband solar spectrum, the energy conversion efficiency is bounded to be less than 31% in current single-junction solar cells, known as the Shockley-Queisser (SQ) limit. One of the essential assumptions in reaching this SQ limit is that the semiconductors can at most create one electron-hole pair (i.e., an exciton) after absorbing one photon with energy above the bandgap. Singlet fission in certain organic semiconductors can potentially circumvent this limit by splitting one photo-excited singlet exciton into two triplet excitons. Nonetheless, the mechanism of singlet fission is not transparent with intensive debate on whether a direct coherent coupling scheme or an indirect charge-transfer picture is the primary origin. In this talk, I’ll briefly summarize the latest progresses in the field, show our recent experimental evidences for a coherent coupling scheme involving delocalized excitons in a protypical system of crystalline tetracene, and propose potential applications of singlet fission beyond solar conversion.

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