ISIS & icFRC, University of Strasbourg and CNRS, 8 allée Gaspard Monge, Strasbourg, 67000, France.
Angew Chem Int Ed Engl. 2016 May 17;55(21):6202-6. doi: 10.1002/anie.201600428. Epub 2016 Apr 13.
We present direct evidence of enhanced non-radiative energy transfer between two J-aggregated cyanine dyes strongly coupled to the vacuum field of a cavity. Excitation spectroscopy and femtosecond pump-probe measurements show that the energy transfer is highly efficient when both the donor and acceptor form light-matter hybrid states with the vacuum field. The rate of energy transfer is increased by a factor of seven under those conditions as compared to the normal situation outside the cavity, with a corresponding effect on the energy transfer efficiency. The delocalized hybrid states connect the donor and acceptor molecules and clearly play the role of a bridge to enhance the rate of energy transfer. This finding has fundamental implications for coherent energy transport and light-energy harvesting.
我们提供了两个强烈耦合到腔真空场的 J 聚集菁染料之间非辐射能量转移增强的直接证据。激发光谱和飞秒泵浦探测测量表明,当供体和受体与真空场形成光物质混合态时,能量转移是非常有效的。与腔外的正常情况相比,在这些条件下能量转移的速率增加了七倍,相应地也提高了能量转移效率。这些离域的混合态将供体和受体分子连接起来,并在增强能量转移速率方面明显起着桥梁的作用。这一发现对相干能量输运和光能收集具有重要意义。