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Nano-optical imaging of exciton–plasmon polaritons in WSe2/Au heterostructures

机译:WSe2/Au异质结构中激子-等离激激元极化激元的纳米光学成像

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摘要

We report a nano-optical imaging study of exciton–plasmon polaritons (EPPs) in WSe2/Au heterostructures with scattering-type scanning near-field optical microscopy (s-SNOM). By mapping the interference fringes of EPPs at various excitation energies, we constructed the dispersion diagram of the EPPs, which shows strong exciton–plasmon coupling with a sizable Rabi splitting energy (∼0.19 eV). Furthermore, we found a sensitive dependence of the polariton wavelength (λp) on WSe2 thickness (d). When d is below 40 nm, λp decreases rapidly with increasing d. As d reaches 50 nm and above, λp drops to 210 nm, which is over 4 times smaller than that of the free-space photons. Our simulations indicate that the high spatial confinement of EPPs is due to the strong localization of the polariton field inside WSe2. Our work uncovers the transport properties of EPPs and paves the way for future applications of these highly confined polaritons in nanophotonics and optoelectronics.
机译:我们报告一个nano-optical成像的研究异质结构与scattering-type扫描近场光学显微镜(s-SNOM)。映射EPPs的干涉条纹各种激发能量,我们构建了EPPs的色散图,它显示了强exciton-plasmon耦合相当大拉比分裂的能量(0.19∼eV)。发现了一个极化声子的敏感依赖性波长(λp) WSe2厚度(d),当d低于40 nm,λp下降迅速增加d, d达到50海里以上,λp降到210海里,这是比小/ 4倍光子的空间。EPPs的高空间约束强大的本地化的极化声子场WSe2内部。EPPs的属性和为未来铺平了道路这些高度限制极化声子的应用程序在纳米光子学和光电。

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