Department of Physics and Astronomy, Department of Electrical and Computer Engineering and Laboratory for Nanophotonics, Rice University , Houston, Texas 77005, United States.
Nano Lett. 2017 Jun 14;17(6):3809-3814. doi: 10.1021/acs.nanolett.7b01176. Epub 2017 May 30.
Strong coupling between plasmons and excitons in nanocavities can result in the formation of hybrid plexcitonic states. Understanding the dispersion relation of plexcitons is important both for fundamental quantum science and for applications including optoelectronics and nonlinear optics devices. The conventional approach, based on statistics over different nanocavities, suffers from large inhomogeneities from the samples, owing to the nonuniformity of nanocavities and the lack of control over the locations and orientations of the excitons. Here we report the first measurement of the dispersion relationship of plexcitons in an individual nanocavity. Using a single silver nanorod as a Fabry-Pérot nanocavity, we realize strong coupling of plasmon in single nanocavity with excitons in a single atomic layer of tungsten diselenide. The plexciton dispersion is measured by in situ redshifting the plasmon energy via successive deposition of a dielectric layer. Room-temperature formation of plexcitons with Rabi splittings as large as 49.5 meV is observed. The realization of strong plasmon-exciton coupling by in situ tuning of the plasmon provides a novel route for the manipulation of excitons in semiconductors.
纳米腔中的等离激元与激子之间的强耦合会导致杂化激子态的形成。理解激子的色散关系对于基础量子科学以及包括光电和非线性光学器件在内的应用都很重要。传统的方法基于对不同纳米腔的统计,由于纳米腔的不均匀性以及对激子的位置和取向缺乏控制,因此会受到来自样品的较大不均匀性的影响。在这里,我们报告了在单个纳米腔中测量激子的色散关系的首次实验。我们使用单个银纳米棒作为法布里-珀罗纳米腔,实现了单个纳米腔中的等离激元和单层二硒化钨中的激子的强耦合。通过连续沉积介电层来原位红移等离激元的能量,从而测量了激子的色散。观察到室温下形成的激子的拉比分裂高达 49.5 meV。通过等离激元的原位调谐实现强等离激元-激子耦合,为半导体中激子的操控提供了一种新途径。