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Exciton-polaritons in a crystalline anisotropic organic microcavity

机译:在结晶各向异性有机微腔中的激子 - 极性膜

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Investigation of polaritons in organic microcavities with strong light-matter interaction is of fundamental and practical interest. In the paper we study for the first time the dispersion of exciton-polaritons in a microcavity utilizing anisotropic organic crystals with one and two molecules per unit cell as optically active material. It is known that in bulk anisotropic organic crystals (like anthracene, tetracene and similar ones) the energies of Coulomb excitons are non-analytical functions of their wave vector k at small k (i.e. the energy of the exciton is different for different directions of the wave vector in the limit k → 0). We show that this is not the case in a planar microcavity where Coulomb exciton states are two-dimensional and the energy of Coulomb excitons at small wave vectors is an analytical function. Also, in contrast to widely used inorganic microcavities, in an anisotropic organic microcavity the cavity photon modes with both possible polarizations mix with the exciton states in the formation of polariton states. We demonstrate that these two factors result for small wave vectors in an almost isotropic dispersion of polaritons in an anisotropic organic crystalline microcavity, which can be observed in reflection, transmission and photoluminescence spectra of organic microcavity.
机译:具有强光物质相互作用的有机微腔中极化子的对极性官部的研究具有基本和实际的兴趣。在本文中,我们首次研究了利用各向异性有机晶体在微腔中分散在微腔中,每单位细胞作为光学活性物质的一个和两个分子。众所周知,在块状各向异性有机晶体中(如蒽,四烯和类似的),库仑激子的能量是它们的波载体k的非分析函数,其小k(即,激子的能量对于不同方向不同在极限k→0中的波矢量)。我们表明,在平面微腔中不是这种情况,其中库仑激子状态是二维的,并且小波形矢量的库仑激子的能量是分析功能。此外,与广泛使用的无机微腔相反,在各向异性有机微腔中,具有两种可能的偏振的腔光子模式与激子状态混合在形成极谱状态。我们证明,这两个因素导致小波载体在极性有机结晶微腔中极化的极性分散体中的几乎各向同性分散,这可以在有机微腔的反射,透射和光致发光光谱中观察到。

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