Semiconductor Optics, Institute of Solid State Physics, University of Bremen, Bremen, 28334, Germany.
Semiconductor Epitaxy, Institute of Solid State Physics, University of Bremen, Bremen, 28334, Germany.
Sci Rep. 2016 Oct 4;6:34392. doi: 10.1038/srep34392.
We present evidence for the existence of a hybrid state of Tamm plasmons and microcavity exciton polaritons in a II-VI material based microcavity sample covered with an Ag metal layer. The bare cavity mode shows a characteristic anticrossing with the Tamm-plasmon mode, when microreflectivity measurements are performed for different detunings between the Tamm plasmon and the cavity mode. When the Tamm-plasmon mode is in resonance with the cavity polariton four hybrid eigenstates are observed due to the coupling of the cavity-photon mode, the Tamm-plasmon mode, and the heavy- and light-hole excitons. If the bare Tamm-plasmon mode is tuned, these resonances will exhibit three anticrossings. Experimental results are in good agreement with calculations based on the transfer matrix method as well as on the coupled-oscillators model. The lowest hybrid eigenstate is observed to be red shifted by about 13 meV with respect to the lower cavity polariton state when the Tamm plasmon is resonantly coupled with the cavity polariton. This spectral shift which is caused by the metal layer can be used to create a trapping potential channel for the polaritons. Such channels can guide the polariton propagation similar to one-dimensional polariton wires.
我们在一个 II-VI 材料的微腔样品上覆盖了一层 Ag 金属层,证明了 Tamm 等离子体和微腔激子极化激元的混合态的存在。当进行不同的 Tamm 等离子体和腔模之间的失谐微反射率测量时,裸腔模式显示出与 Tamm-等离子体模式的特征交叉。当 Tamm-等离子体模式与腔极化激元共振时,由于腔光子模式、Tamm-等离子体模式和重空穴和轻空穴激子的耦合,观察到四个混合本征态。如果调节裸 Tamm-等离子体模式,这些共振将表现出三个交叉。实验结果与基于转移矩阵方法以及耦合振荡器模型的计算结果非常吻合。当 Tamm 等离子体与腔极化激元共振耦合时,观察到最低的混合本征态相对于较低的腔极化激元态红移约 13meV。这种由金属层引起的光谱位移可用于为极化激元创建一个陷波势通道。这样的通道可以类似一维极化激元线引导极化激元的传播。