去相
材料科学
物理
激发
人口
量子
连贯性(哲学赌博策略)
量子退相干
凝聚态物理
量子力学
人口学
社会学
作者
Gamze Findik,Melike Biliroglu,Dovletgeldi Seyitliyev,Juliana Mendes,Andrew Barrette,Hossein Ardekani,Lei Lei,Qi Dong,Franky So,Kenan Gündoğdu
出处
期刊:Nature Photonics
[Nature Portfolio]
日期:2021-06-21
卷期号:15 (9): 676-680
被引量:76
标识
DOI:10.1038/s41566-021-00830-x
摘要
Light–matter interactions can create and manipulate collective many-body phases in solids1–3, which are promising for the realization of emerging quantum applications. However, in most cases, these collective quantum states are fragile, with a short decoherence and dephasing time, limiting their existence to precision tailored structures under delicate conditions such as cryogenic temperatures and/or high magnetic fields. In this work, we discovered that the archetypal hybrid perovskite, MAPbI3 thin film, exhibits such a collective coherent quantum many-body phase, namely superfluorescence, at 78 K and above. Pulsed laser excitation first creates a population of high-energy electron–hole pairs, which quickly relax to lower energy domains and then develop a macroscopic quantum coherence through spontaneous synchronization. The excitation fluence dependence of the spectroscopic features and the population kinetics in such films unambiguously confirm all the well-known characteristics of superfluorescence. These results show that the creation and manipulation of collective coherent states in hybrid perovskites can be used as the basic building blocks for quantum applications4,5. A collective coherent quantum many-body phase, namely superfluorescence, is observed in CH3NH3PbI3 at 78 K. The excitation fluence dependence of the spectroscopic features and the population kinetics confirm all its well-known characteristics.
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