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Electrically tunable organic–inorganic hybrid polaritons with monolayer WS2

机译:单层WS2的电可调有机-无机混合极化子

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摘要

Exciton-polaritons are quasiparticles consisting of a linear superposition of photonic and excitonic states, offering potential for nonlinear optical devices. The excitonic component of the polariton provides a finite Coulomb scattering cross section, such that the different types of exciton found in organic materials (Frenkel) and inorganic materials (Wannier-Mott) produce polaritons with different interparticle interaction strength. A hybrid polariton state with distinct excitons provides a potential technological route towards in situ control of nonlinear behaviour. Here we demonstrate a device in which hybrid polaritons are displayed at ambient temperatures, the excitonic component of which is part Frenkel and part Wannier-Mott, and in which the dominant exciton type can be switched with an applied voltage. The device consists of an open microcavity containing both organic dye and a monolayer of the transition metal dichalcogenide WS2. Our findings offer a perspective for electrically controlled nonlinear polariton devices at room temperature.
机译:激子极化子是由光子和激子态的线性叠加组成的准粒子,为非线性光学器件提供了潜力。极化子的激子成分提供有限的库仑散射截面,因此在有机材料(Frenkel)和无机材料(Wannier-Mott)中发现的不同类型的激子会产生具有不同粒子间相互作用强度的极化子。具有不同激子的混合极化子态为非线性行为的原位控制提供了一条潜在的技术途径。在这里,我们演示了一种在环境温度下显示混合极化子的设备,其激子成分为Frenkel部分和Wannier-Mott部分,并且可以通过施加电压来切换主要激子类型。该设备由一个开放的微腔组成,该腔同时包含有机染料和单层过渡金属二卤化物WS2。我们的发现为室温下电控非线性极化子器件提供了前景。

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