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Ultrastrong light-matter coupling in electrically doped microcavity organic light emitting diodes

机译:电掺杂微腔有机发光二极管中的超强光-质耦合

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The coupling of the electromagnetic field with an electronic transition gives rise, for strong enough light-matter interactions, to hybrid states called exciton-polaritons. When the energy exchanged between light and matter becomes a significant fraction of the material transition energy an extreme optical regime called ultrastrong coupling (USC) is achieved. We report a microcavity embedded p-i-n monolithic organic light emitting diode working in USC, employing a thin film of squaraine dye as active layer. A normalized coupling ratio of 30% has been achieved at room temperature. These USC devices exhibit a dispersion-less angle-resolved electroluminescence that can be exploited for the realization of innovative optoelectronic devices. Our results may open the way towards electrically pumped polariton lasers.
机译:电磁场与电子跃迁的耦合会产生足够强的光-物质相互作用,从而形成称为激子-极化子的混合态。当光与物质之间交换的能量成为材料跃迁能量的很大一部分时,就会实现一种称为超强耦合(USC)的极端光学机制。我们报告了一种微腔嵌入的p-i-n单片有机发光二极管,在USC中工作,采用方酸染料薄膜作为活性层。在室温下已实现30%的标准化耦合比。这些USC器件显示出无色散的角度分辨电致发光,可用于实现创新的光电器件。我们的结果可能为电泵浦极化子激光器开辟道路。

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