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等离子体系统中的负有效质量。

Negative Effective Mass in Plasmonic Systems.

作者信息

Bormashenko Edward, Legchenkova Irina

机构信息

Department of Chemical Engineering, Ariel University, Ariel 407000, Israel.

出版信息

Materials (Basel). 2020 Apr 17;13(8):1890. doi: 10.3390/ma13081890.

Abstract

We report the negative effective mass (density) metamaterials based on the electro-mechanical coupling exploiting plasma oscillations of a free electron gas. The negative mass appears as a result of the vibration of a metallic particle with a frequency of , which is close the frequency of the plasma oscillations of the electron gas m 2 relative to the ionic lattice m 1 . The plasma oscillations are represented with the elastic spring k 2 = ω p 2 m 2 , where ω p is the plasma frequency. Thus, the metallic particle vibrated with the external frequency is described by the effective mass m e f f = m 1 + m 2 ω p 2 ω p 2 - ω 2 , which is negative when the frequency ω approaches ω p from above. The idea is exemplified with two conducting metals, namely Au and Li.

摘要

我们报道了基于利用自由电子气的等离子体振荡进行机电耦合的负有效质量(密度)超材料。负质量是金属颗粒以频率振动的结果,该频率接近电子气(m_2)相对于离子晶格(m_1)的等离子体振荡频率。等离子体振荡由弹性弹簧(k_2 = \omega_p^2 m_2)表示,其中(\omega_p)是等离子体频率。因此,以外部频率振动的金属颗粒由有效质量(m_{eff} = m_1 + m_2 \frac{\omega_p^2}{\omega_p^2 - \omega^2})描述,当频率(\omega)从上方接近(\omega_p)时,该有效质量为负。该想法以两种导电金属,即金和锂为例进行了说明。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e96/7215794/becd96ad7d40/materials-13-01890-g001.jpg

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