连续体中的束缚态和介观结构中的长寿命电子共振

IF 3.7 2区 物理与天体物理 Q1 Physics and Astronomy Physical Review B Pub Date : 2024-07-26 DOI:10.1103/physrevb.110.035428
Leonard Dobrzyński, Housni Al-Wahsh, Abdellatif Akjouj, Eman A. Abdel-Ghaffar
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引用次数: 0

摘要

束缚态特征函数在这里被定义为在所研究结构的子空间内严格局部化,并且没有递减行为。它的特征波长可以在状态连续体内。连续体中的束缚态(BIC)和长寿命共振已成为产生电子波极端局域化的一种独特方式。我们从理论和数值上证明了在一个与有限桩和两个电子肋/桥波导耦合的环状电子微谐振器中的连续体中的半无限束缚态(SIBICs)和长寿命共振,以及它们的存在条件。该结构由一个长度为 L 的闭合环、一个长度为 L1 的有限桩和两条半无限导线组成。局部位于半无限子空间域的 SIBIC 会引起传输零。其他的则会在长效共振中间产生传输一。BIC 与结构内部无限寿命的局部共振相对应,不会泄漏到周围的导线中。当 BIC 存在于状态连续体中时,它们会诱发法诺共振,在传输光谱中表现出尖锐的峰值,并在存根长度 L1 的特定值的状态密度变化中表现出尖锐的峰值。这使得我们可以通过这个长度来调节这些共振。所得结果充分考虑了最终系统与参考系统之间的状态数守恒。这一守恒规则使我们能够找到最终系统的所有状态,以及其中的连续状态。分析结果是通过格林函数技术获得的。本文介绍的结构和长寿命共振由于对微弱扰动具有高度敏感性,可能具有潜在的应用前景,特别是在传感、滤波和微电子器件方面。
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Bound states in the continuum and long-lived electronic resonances in mesoscopic structures
A. bound state eigenfunction is defined here to be strictly localized within a subspace of the structure under study and has no decreasing behavior. Its eigenwavelength can be within state continua. Bound states in the continuum (BICs) and long-lived resonances have become a unique way to produce the extreme localization of electronic waves. We present a theoretical and numerical demonstration of semi-infinite bound states in the continuum (SIBICs) and long-lived resonances in a ringlike electronic microresonator coupled to a finite stub and to two electronic rib/ridge waveguides, together with their existence conditions. This structure is composed of a closed loop of length L, a finite stub of length L1 and two semi-infinite leads. SIBICs localized in a semi-infinite subspace domain induce transmission zeros. Others induce transmission ones in the middle of long-lived resonances. The BICs correspond to localized resonances of infinite lifetime inside the structure, without any leakage into the surrounding leads. When BICs exist within state continua, they induce Fano resonances exhibiting sharp peaks in the transmission spectra and in the variation of the density of states for specific values of the stub length L1. This enables one to regulate these resonances by means of this length. The obtained results take due account of the state number conservation between the final system and the reference one. This conservation rule enables one to find all the states of the final system and among them the bound in the continuum ones. The analytical results are obtained by means of the Green's function technique. The structures and the long-lived resonances presented in this paper may have potential applications due to their high sensitivities to weak perturbations, in particular in sensing, wave filtering, and microelectronic devices.
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来源期刊
Physical Review B
Physical Review B 物理-物理:凝聚态物理
CiteScore
6.70
自引率
32.40%
发文量
0
审稿时长
3.0 months
期刊介绍: Physical Review B (PRB) is the world’s largest dedicated physics journal, publishing approximately 100 new, high-quality papers each week. The most highly cited journal in condensed matter physics, PRB provides outstanding depth and breadth of coverage, combined with unrivaled context and background for ongoing research by scientists worldwide. PRB covers the full range of condensed matter, materials physics, and related subfields, including: -Structure and phase transitions -Ferroelectrics and multiferroics -Disordered systems and alloys -Magnetism -Superconductivity -Electronic structure, photonics, and metamaterials -Semiconductors and mesoscopic systems -Surfaces, nanoscience, and two-dimensional materials -Topological states of matter
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