Exact Theory of Edge Diffraction and Launching of Transverse Electric Plasmons at Two-Dimensional Junctions

IF 1.3 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY JETP Letters Pub Date : 2025-01-15 DOI:10.1134/S0021364024604263
D. Svintsov, A. Shabanov
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Abstract

An exact solution for electromagnetic wave diffraction at the junction of two-dimensional electron systems is obtained and analyzed for electric field polarized along the edge. A special emphasis is paid to the metal-contacted and terminated edges. In the former case, electric field at the edge tends to zero; in the latter case, it tends to a finite value which is screened by a two-dimensional system in an anomalous fashion. For both types of edge and capacitive type of the two-dimensional conductivity, an incident wave excites transverse electric two-dimensional plasmons. The amplitude of excited TE plasmons is maximized and becomes order of incident wave amplitude for capacitive impedance of two-dimensional electron systems order of free space impedance. For both large and small impedance of two-dimensional electron systems, the amplitude of TE plasmons tends to zero according to the power laws which are explicitly derived.

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二维结处横向电激元边缘衍射和发射的精确理论
得到了二维电子系统交界处电磁波衍射的精确解,并对沿边缘极化的电场进行了分析。特别强调的是金属接触和终止的边缘。在前一种情况下,边缘处的电场趋于零;在后一种情况下,它趋向于一个有限值,这个有限值以一种反常的方式被二维系统所屏蔽。对于两种类型的边缘和电容型二维电导率,入射波激发横向电二维等离子体。受激TE等离子体的幅值最大,成为二维电子系统电容阻抗的入射波幅值阶,成为自由空间阻抗的阶。对于二维电子系统的大阻抗和小阻抗,根据幂律,TE等离子体的振幅都趋向于零。
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来源期刊
JETP Letters
JETP Letters 物理-物理:综合
CiteScore
2.40
自引率
30.80%
发文量
164
审稿时长
3-6 weeks
期刊介绍: All topics of experimental and theoretical physics including gravitation, field theory, elementary particles and nuclei, plasma, nonlinear phenomena, condensed matter, superconductivity, superfluidity, lasers, and surfaces.
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