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Coherent perfect absorption in one-port devices with wedged organic thin film absorbers

机译:具有楔形有机薄膜吸收器的单端口装置的相干完美吸收

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We are using organic small molecules as absorbing material to investigate coherent perfect absorption in layered thin-film structures. Therefore we realize strongly asymmetric resonator structures with a high optical quality dielectric distributed Bragg reflector and thermally evaporated wedged organic materials on top. We investigate the optical properties of these structures systematically by selective optical pumping and probing of the structure. By shifting the samples along the wedge, we demonstrate how relations of phase and amplitude of all waves can be tuned to achieve coherent perfect absorption. Thus almost all incident radiation dissipates in the thin organic absorbing layer. Furthermore, we show how these wedged structures on a high-quality reflective dielectric mirror can be used to determine optical dispersion relations of absorbing materials in a broad spectral range. This novel approach does not require any specific a priori knowledge on the absorbing film.
机译:我们正在使用有机小分子作为吸收材料,以研究层状薄膜结构的相干完美吸收。因此,我们实现了具有高光学质量介电分布布拉格反射器的强不对称的谐振器结构,并在顶部的热蒸发的楔形有机材料。我们通过选择性光学泵送和结构的探测来系统地研究了这些结构的光学性质。通过沿着楔形转移样品,我们展示了可以调整所有波的相位和幅度的关系,以实现相干的完美吸收。因此,几乎所有入射辐射都在薄的有机吸收层中耗散。此外,我们示出了这些楔形结构在高质量的反射介质镜上的方式如何用于确定宽光谱范围内吸收材料的光学分散关系。这种新颖的方法不需要对吸收膜的任何特定先验知识。

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