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Hybrid longitudinal-transverse phonon polaritons

机译:混合纵向-横向声子极化子

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Phonon polaritons, hybrid light-matter quasiparticles resulting from strong coupling of the electromagnetic field with the lattice vibrations of polar crystals are a promising platform for mid-infrared photonics but for the moment there has been no proposal allowing for their electrical pumping. Electrical currents in fact mainly generate longitudinal optical phonons, while only transverse ones participate in the creation of phonon polaritons. We demonstrate how to exploit long-cell polytypes of silicon carbide to achieve strong coupling between transverse phonon polaritons and zone-folded longitudinal optical phonons. We develop a microscopic theory predicting the existence of the resulting hybrid longitudinal-transverse excitations. We then provide an experimental observation by tuning the resonance of a nanopillar array through the folded longitudinal optical mode, obtaining a clear spectral anti-crossing. The hybridisation of phonon polaritons with longitudinal phonons could represent an important step toward the development of phonon polariton-based electrically pumped mid-infrared emitters.
机译:声子极化子,电磁场与极性晶体的晶格振动的强耦合产生的杂化光子准粒子是中红外光子学的有前途的平台,但是目前尚无提议允许它们进行电泵浦。实际上,电流主要产生纵向光学声子,而只有横向电流参与声子极化子的产生。我们演示了如何利用碳化硅的长单元多型体来实现横向声子极化子与区域折叠纵向光学声子之间的强耦合。我们开发了一种微观理论,可预测所得混合纵向-横向激励的存在。然后,我们通过折叠纵向光学模式调整纳米柱阵列的共振,从而获得清晰的光谱抗交叉性,从而提供实验观察。声子极化子与纵向声子的混合可能代表了发展基于声子极化子的电泵浦中红外发射器的重要一步。

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