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首页> 外文期刊>Physical review letters >Charged Polaron Polaritons in an Organic Semiconductor Microcavity
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Charged Polaron Polaritons in an Organic Semiconductor Microcavity

机译:有机半导体微腔中的带电极化子极化子

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We report strong coupling between light and polaron optical excitations in a doped organic semiconductor microcavity at room temperature. Codepositing MoO3 and the hole transport material 4, 4'-cyclohexylidenebis[N, N-bis(4-methylphenyl) benzenamine] introduces a large hole density with a narrow linewidth optical transition centered at 1.8 eV and an absorption coefficient exceeding 104 cm(-1). Coupling this transition to a Fabry-Perot cavity mode yields upper and lower polaron polariton branches that are clearly resolved in angle-dependent reflectivity with a vacuum Rabi splitting. h Omega(R) 0.3 eV. This result establishes a path to electrically control polaritons in organic semiconductors and may lead to increased polariton-polariton Coulombic interactions that lower the threshold for nonlinear phenomena such as polariton condensation and lasing.
机译:我们报告在室温下掺杂有机半导体微腔中光和极化子光学激发之间的强耦合。 MoO3和空穴传输材料4的共沉积4'-环己叉基双[N,N-双(4-甲基苯基)苯甲胺]引入了大的空穴密度,窄的线宽光学跃迁以1.8 eV为中心,吸收系数超过104 cm(- 1)。将此过渡耦合到Fabry-Perot腔模,将产生上下极化子极化子分支,这些分支在真空Rabi分离下的角度相关反射率中得到清晰解析。 h Omega> 0.3 eV。该结果为电控制有机半导体中的极化子建立了路径,并可能导致极化子-极化子库仑相互作用增加,从而降低了非线性现象(例如极化子凝聚和激射)的阈值。

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