Gómez-Castaño Mayte, Redondo-Cubero Andrés, Buisson Lionel, Pau Jose Luis, Mihi Agustin, Ravaine Serge, Vallée Renaud A L, Nitzan Abraham, Sukharev Maxim
CNRS , University of Bordeaux , CRPP, UMR5031, 115 Avenue Schweitzer , 33600 , Pessac , France.
Institut de Ciència de Materials de Barcelona (ICMAB-CSIC) , Campus de la UAB , 08193 Barcelona , Spain.
Nano Lett. 2019 Aug 14;19(8):5790-5795. doi: 10.1021/acs.nanolett.9b02521. Epub 2019 Aug 5.
The physics of collective optical response of molecular assemblies, pioneered by Dicke in 1954, has long been at the center of theoretical and experimental scrutiny. The influence of the environment on such phenomena is also of great interest due to various important applications in, e.g., energy conversion devices. In this Letter, we demonstrate both experimentally and theoretically the spatial modulations of the collective decay rates of molecules placed in proximity to a metal interface. We show in a very simple framework how the cooperative optical response can be analyzed in terms of intermolecular correlations causing interference between the response of different molecules and the polarization induced on a nearby metallic boundary and predict similar collective interference phenomena in excitation energy transfer between molecular aggregates.
1954年由迪克开创的分子集合体集体光学响应物理学,长期以来一直是理论和实验研究的核心。由于在例如能量转换装置等各种重要应用中,环境对这类现象的影响也备受关注。在本信函中,我们通过实验和理论证明了放置在金属界面附近的分子集体衰变率的空间调制。我们在一个非常简单的框架中展示了如何根据分子间相关性来分析合作光学响应,这种相关性会导致不同分子的响应与在附近金属边界上诱导的极化之间产生干涉,并预测分子聚集体之间激发能量转移中类似的集体干涉现象。