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强关联氧化物中的超扁平且长寿命等离激元

Ultra-flat and long-lived plasmons in a strongly correlated oxide.

作者信息

Gao Han, Ding Chao, Son Jaeseok, Zhu Yangyu, Wang Mingzheng, Yu Zhi Gen, Chen Jianing, Wang Le, Chambers Scott A, Noh Tae Won, Zhao Mingwen, Li Yangyang

机构信息

School of Physics, Shandong University, Jinan, 250100, Shandong, China.

Center for Correlated Electron Systems, Institute for Basic Science (IBS), Seoul, 08826, Republic of Korea.

出版信息

Nat Commun. 2022 Aug 9;13(1):4662. doi: 10.1038/s41467-022-32359-0.

Abstract

Plasmons in strongly correlated systems are attracting considerable attention due to their unconventional behavior caused by electronic correlation effects. Recently, flat plasmons with nearly dispersionless frequency-wave vector relations have drawn significant interest because of their intriguing physical origin and promising applications. However, these flat plasmons exist primarily in low-dimensional materials with limited wave vector magnitudes (q < ~0.7 Å). Here, we show that long-lived flat plasmons can propagate up to ~1.2 Å in α-TiO, a strongly correlated three-dimensional Mott-insulator, with an ultra-small energy fluctuation (<40 meV). The strong correlation effect renormalizes the electronic bands near Fermi level with a small bandwidth, which is responsible for the flat plasmons in α-TiO. Moreover, these flat plasmons are not affected by Landau damping over a wide range of wave vectors (q < ~1.2 Å) due to symmetry constrains on the electron wavefunctions. Our work provides a strategy for exploring flat plasmons in strongly correlated systems, which in turn may give rise to novel plasmonic devices in which flat and long-lived plasmons are desirable.

摘要

强关联体系中的等离激元因其由电子关联效应导致的非常规行为而备受关注。近来,具有几乎无色散频率 - 波矢关系的平面等离激元因其有趣的物理起源和潜在应用而引起了极大兴趣。然而,这些平面等离激元主要存在于波矢大小有限(q < 0.7 Å)的低维材料中。在此,我们表明,在强关联的三维莫特绝缘体α - TiO中,具有超长寿命的平面等离激元能够在高达1.2 Å的波矢下传播,且能量涨落极小(<40 meV)。强关联效应使费米能级附近的电子能带重整化,带宽很小,这就是α - TiO中平面等离激元的成因。此外,由于电子波函数的对称性限制,这些平面等离激元在很宽的波矢范围(q < ~1.2 Å)内不受朗道阻尼影响。我们的工作为在强关联体系中探索平面等离激元提供了一种策略,这反过来可能催生需要平面且长寿命等离激元的新型等离激元器件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b1d/9363501/b069a8142d58/41467_2022_32359_Fig1_HTML.jpg

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