论文标题

探测与等离子折纸的相关状态

Probing correlated states with plasmonic origami

论文作者

Papaj, Michał, Lewandowski, Cyprian

论文摘要

了解平坦材料(例如Moiré异质结构)中强相关状态的性质是实验和理论追求的最前沿。尽管磁通转运,扫描探针和光学技术通常在研究基本顺序的性质方面非常成功,但基态的确切性质通常仍然未知。在这里,我们建议利用扁平频段系统中存在的强光膜耦合,以通过动态介电响应进入多体基态的结构来获得见识。我们认为,由于相关性引起的系统的有效晶格扩大,常规的远程等离子体变成了``折叠'',以产生多频率等离子体的光谱。我们详细介绍了几种机制,这些机制通过这些机制和动力学介电响应的结构易受基础顺序揭示出有价值的见解,例如相互作用驱动的带隙,自旋结构和顺序周期性。

Understanding the nature of strongly correlated states in flat-band materials (such as moiré heterostructures) is at the forefront of both experimental and theoretical pursuits. While magnetotransport, scanning probe, and optical techniques are often very successful in investigating the properties of the underlying order, the exact nature of the ground state often remains unknown. Here we propose to leverage strong light-matter coupling present in the flat-band systems to gain insight through dynamical dielectric response into the structure of the many-body ground state. We argue that due to the enlargement of the effective lattice of the system arising from correlations, conventional long-range plasmon becomes ``folded'' to yield a multiband plasmon spectrum. We detail several mechanisms through which the structure of the plasmon spectrum and that of the dynamical dielectric response is susceptible to the underlying order revealing valued insights such as the interaction-driven band gaps, spin-structure, and the order periodicity.

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