论文标题

揭示了极化运输的混合性质:从增强的扩散到弹道运动,接近光速

Unveiling the mixed nature of polaritonic transport: From enhanced diffusion to ballistic motion approaching the speed of light

论文作者

Balasubrahmaniyam, M., Simkovich, Arie, Golombek, Adina, Ankonina, Guy, Schwartz, Tal

论文摘要

近年来,很明显,通过与光子连贯的耦合,可以增强激子和电荷载体的运输,从而产生称为polaritons的混合激发的形成。这种增强具有深远的技术意义,但是,这些系统中这些复合光 - 物质激发的增强机制和运输性质仍然难以捉摸。在这里,我们绘制了强烈耦合到自组装的分子层的表面结合光波的超快时空动力学,并在能量/动量空间中充分解决它们。我们的研究揭示了复杂的行为,源于极化子的杂种性质。我们发现,通过光与物质之间的相干混合引起的分子障碍与远程相关性之间的平衡导致扩散和弹道传输之间的迁移率过渡,这可以通过改变极化子的光形成组成来控制。此外,我们直接证明,与光的耦合可以通过六个数量级增强分子激子的扩散系数,甚至在光速三分之二的情况下导致弹道流动。

In recent years it has become clear that the transport of excitons and charge carriers in molecular systems can be enhanced by coherent coupling with photons, giving rise to the formation of hybrid excitations known as polaritons. Such enhancement has far-reaching technological implications, however, the enhancement mechanism and the transport nature of these composite light-matter excitations in such systems still remain elusive. Here we map the ultrafast spatiotemporal dynamics of surface-bound optical waves strongly coupled to a self-assembled molecular layer and fully resolve them in energy/momentum space. Our studies reveal intricate behavior which stems from the hybrid nature of polaritons. We find that the balance between the molecular disorder and long-range correlations induced by the coherent mixing between light and matter leads to a mobility transition between diffusive and ballistic transport, which can be controlled by varying the light-matter composition of the polaritons. Furthermore, we directly demonstrate that the coupling with light can enhance the diffusion coefficient of molecular excitons by six orders of magnitude and even lead to ballistic flow at two-thirds the speed of light.

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