光子上转换
光子
皮秒
电子
声子
半导体
材料科学
光子学
光电子学
物理
凝聚态物理
光学
发光
量子力学
激光器
作者
Bo Wu,Aocheng Wang,Jing Fu,Yutong Zhang,Cheng Yang,Yiyang Gong,Chuanxiu Jiang,Mingzhu Long,Guofu Zhou,Shuai Yue,Wei Ma,Xinfeng Liu
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2023-09-29
卷期号:9 (39)
被引量:36
标识
DOI:10.1126/sciadv.adi9347
摘要
Phonon-assisted photon upconversion holds great potential for numerous applications, e.g., optical refrigeration. However, traditional semiconductors face energy gain limitations due to thermal energy, typically achieving only ~25 milli–electron volts at room temperature. Here, we demonstrate that quasi–two-dimensional perovskites, with a soft hybrid organic-inorganic lattice, can efficiently upconvert photons with an anti-Stokes shift exceeding 200 milli–electron volts. By using microscopic transient absorption measurements and density functional theory calculations, we explicate that the giant energy gain stems from strong lattice fluctuation leading to a picosecond timescale transient band energy renormalization with a large energy variation of around ±180 milli–electron volts at room temperature. The motion of organic molecules drives the deformation of inorganic framework, providing energy and local states necessary for efficient upconversion within a time constant of around 1 ps. These results establish a deep understanding of perovskite-based photon upconversion and offer previously unknown insights into the development of various upconversion applications.
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