卤化物
光致发光
钙钛矿(结构)
铅(地质)
材料科学
Crystal(编程语言)
光电子学
化学
结晶学
无机化学
计算机科学
地质学
地貌学
程序设计语言
作者
Zhuquan Zhang,Honglie Ning,Zi-Jie Liu,Jin Hou,Aditya D. Mohite,Edoardo Baldini,Nuh Gedik,Keith A. Nelson
出处
期刊:Cornell University - arXiv
日期:2024-07-21
标识
DOI:10.48550/arxiv.2407.15253
摘要
In 1964, Keldysh laid the groundwork for strong-field physics in atomic, molecular, and solid-state systems by delineating a ubiquitous transition from multiphoton absorption to quantum electron tunneling under intense AC driving forces. While both processes in semiconductors can generate carriers and result in photon emission through electron-hole recombination, the low quantum yields in most materials have hindered direct observation of the Keldysh crossover. Leveraging the large quantum yields of photoluminescence in lead halide perovskites, we show that we can not only induce bright light emission from extreme sub-bandgap light excitation but also distinguish between photon-induced and electric-field-induced processes. Our results are rationalized by the Landau-Dykhne formalism, providing insights into the non-equilibrium dynamics of strong-field light-matter interactions. These findings open new avenues for light upconversion and sub-bandgap photon detection, highlighting the potential of lead halide perovskites in advanced optoelectronic applications.
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