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Guest-responsive polaritons in a porous framework: chromophoric sponges in optical QED cavities

机译:在多孔框架中的响应性极性官:光学QED腔中的发色海绵

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摘要

Introducing porous material into optical cavities is a critical step toward the utilization of quantum-electrodynamical (QED) effects for advanced technologies, e.g. in the context of sensing. We demonstrate that crystalline, porous metal–organic frameworks (MOFs) are well suited for the fabrication of optical cavities. In going beyond functionalities offered by other materials, they allow for the reversible loading and release of guest species into and out of optical resonators. For an all-metal mirror-based Fabry–Perot cavity we yield strong coupling (~21% Rabi splitting). This value is remarkably large, considering that the high porosity of the framework reduces the density of optically active moieties relative to the corresponding bulk structure by ~60%. Such a strong response of a porous chromophoric scaffold could only be realized by employing silicon-phthalocyanine (SiPc) dyes designed to undergo strong J -aggregation when assembled into a MOF. Integration of the SiPc MOF as active component into the optical microcavity was realized by employing a layer-by-layer method. The new functionality opens up the possibility to reversibly and continuously tune QED devices and to use them as optical sensors.
机译:将多孔材料引入光学腔是朝向利用量子电动(QED)效应的关键步骤,以实现先进技术,例如,在感知的背景下。我们证明了结晶,多孔金属 - 有机框架(MOF)非常适合于制造光学腔。超越其他材料提供的功能,他们允许可逆装载和释放客体物种进出光学谐振器。对于全金属镜的法布里 - 珀罗腔,我们产生强耦合(〜21%的Rabi分裂)。认为该值非常大,考虑到框架的高孔隙率降低了相对于相应的堆积结构的光学活性部分的密度〜60%。只有在组装成MOF时使用型磷脂 - 酞菁(SIPC)染料,才能实现多孔发色支架的这种强烈反应。通过使用层 - 逐层方法实现SIPC MOF作为光学微腔中的活性分量的集成。新功能开辟了可逆和不断调谐QED设备的可能性,并将其用作光学传感器。

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