Broadband measurement of Feibelman’s quantum surface response functions

IF 9.1 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Zeling Chen, Shu Yang, Zetao Xie, Jinbing Hu, Xudong Zhang, Yipu Xia, Yonggen Shen, Huirong Su, Maohai Xie, Thomas Christensen, Yi Yang
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引用次数: 0

Abstract

Feibelman d -parameter, a mesoscopic complement to the local bulk permittivity, describes quantum optical surface responses for interfaces, including nonlocality, spill-in and -out, and surface-enabled Landau damping. It has been incorporated into the macroscopic Maxwellian framework for convenient modeling and understanding of nanoscale electromagnetic phenomena, calling for the compilation of a d -parameter database for interfaces of interest in nano-optics. However, accurate first-principles calculations of d -parameters face computational challenges, whereas existing measurements of d -parameters are scarce and restricted to narrow spectral windows. We demonstrate a general broadband ellipsometric approach to measure d -parameters at a gold–air interface across the visible–ultraviolet regimes. Gold is found to spill-in and spill-out at different frequencies. We also observe gold’s Bennett mode, a surface-dipole resonance associated with a pole of the d -parameter, around 2.5 eV. Our measurements give rise to and are further validated by the passivity and Kramers–Kronig causality analysis of d -parameters. Our work advances the understanding of quantum surface response and may enable applications like enhanced electron field emission.
费贝尔曼量子表面响应函数的宽带测量
Feibelman d参数是局部体介电常数的介尺度补充,描述了界面的量子光学表面响应,包括非定域性、溢出和溢出,以及表面激活的朗道阻尼。它已被纳入宏观麦克斯韦框架,以方便建模和理解纳米尺度电磁现象,要求为纳米光学感兴趣的界面编制d参数数据库。然而,精确的d参数第一性原理计算面临着计算上的挑战,而现有的d参数测量是稀缺的,并且仅限于狭窄的光谱窗口。我们展示了一种通用的宽带椭偏方法来测量金-空气界面在可见-紫外波段的d -参数。人们发现黄金以不同的频率流入和流出。我们还观察到金的Bennett模式,这是一种与d参数极点相关的表面偶极子共振,大约在2.5 eV左右。我们的测量产生了d参数的被动性和Kramers-Kronig因果关系分析,并进一步验证了这一点。我们的工作促进了对量子表面响应的理解,并可能使增强电子场发射等应用成为可能。
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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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