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二维半导体基纳米腔中维持强非线性的带电双激子极化激元。

Charged biexciton polaritons sustaining strong nonlinearity in 2D semiconductor-based nanocavities.

作者信息

Wei Ke, Liu Qirui, Tang Yuxiang, Ye Yingqian, Xu Zhongjie, Jiang Tian

机构信息

Institute for Quantum Science and Technology, College of Science, National University of Defense Technology, 410073, Changsha, China.

College of Advanced Interdisciplinary Studies, National University of Defense Technology, 410073, Changsha, China.

出版信息

Nat Commun. 2023 Aug 31;14(1):5310. doi: 10.1038/s41467-023-41079-y.

Abstract

Controlling the interaction between light and matter at micro- and nano-scale can provide new opportunities for modern optics and optoelectronics. An archetypical example is polariton, a half-light-half-matter quasi particle inheriting simultaneously the robust coherence of light and the strong interaction of matter, which plays an important role in many exotic phenomena. Here, we open up a new kind of cooperative coupling between plasmon and different excitonic complexes in WS-silver nanocavities, namely plasmon-exciton-trion-charged biexciton four coupling states. Thanks to the large Bohr radius of up to 5 nm, the charged biexciton polariton exhibits strong saturation nonlinearity, ~30 times higher than the neutral exciton polariton. Transient absorption dynamics further reveal the ultrafast many-body interaction nature, with a timescale of <100 fs. The demonstration of biexciton polariton here combines high nonlinearity, simple processing and strong scalability, permitting access for future energy-efficient optical switching and information processing.

摘要

在微纳尺度上控制光与物质之间的相互作用可为现代光学和光电子学带来新机遇。一个典型例子是极化激元,它是一种半光半物质的准粒子,同时继承了光的强相干性和物质的强相互作用,在许多奇异现象中发挥着重要作用。在此,我们在WS-银纳米腔中开辟了一种等离子体激元和不同激子复合体之间的新型协同耦合,即等离子体激元-激子-三重态-带电双激子四种耦合态。由于高达5纳米的大玻尔半径,带电双激子极化激元表现出强烈的饱和非线性,比中性激子极化激元高约30倍。瞬态吸收动力学进一步揭示了超快多体相互作用的本质,时间尺度小于100飞秒。这里双激子极化激元的演示结合了高非线性、简单加工和强可扩展性,为未来节能光学开关和信息处理提供了可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61e7/10471760/3de4b71d96ee/41467_2023_41079_Fig1_HTML.jpg

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