论文标题

用声子介导的光学读数在2D半导体中以互动为导向的深色激子的交通运输

Interaction-driven transport of dark excitons in 2D semiconductors with phonon-mediated optical readout

论文作者

Chand, Saroj B., Woods, John M., Quan, Jiamin, Mejia, Enrique, Taniguchi, Takashi, Watanabe, Kenji, Alù, Andrea, Grosso, Gabriele

论文摘要

量子信息技术的不断增长需要通过有效的读出机制在长距离内传播信息。由于其直接的电流转换,激发量量子流体已成为该任务的强大平台。在二维过渡金属二分法中,旋转和山谷之间的耦合为利用,操纵和存储信息的一些令人兴奋的机会。但是,单层的较大不均匀性无法通过明亮的激子的特性来克服,从而阻碍了旋转 - 瓦利的传输。尽管如此,丰富的带结构支持具有强大结合能和更长寿命的深色激发态,非常适合远程运输。在这里,我们表明深色激子可以在几个微米上扩散,并证明这种排斥驱动的传播在非均匀样品中是可靠的。通过手性声子介导的光学读数的黑暗状态的远距离传播为经典和量子信息技术中的应用提供了激发设备的新概念。

The growing field of quantum information technology requires propagation of information over long distances with efficient readout mechanisms. Excitonic quantum fluids have emerged as a powerful platform for this task due to their straightforward electro-optical conversion. In two-dimensional transition metal dichalcogenides, the coupling between spin and valley provides exciting opportunities for harnessing, manipulating and storing bits of information. However, the large inhomogeneity of single layers cannot be overcome by the properties of bright excitons, hindering spin-valley transport. Nonetheless, the rich band structure supports dark excitonic states with strong binding energy and longer lifetime, ideally suited for long-range transport. Here we show that dark excitons can diffuse over several micrometers and prove that this repulsion-driven propagation is robust across non-uniform samples. The long-range propagation of dark states with an optical readout mediated by chiral phonons provides a new concept of excitonic devices for applications in both classical and quantum information technology.

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