Bound-state evolution of Dirichlet waveguide with Neumann window(s) in transverse electric fields

IF 2.6 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
F Chogle and O Olendski
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Abstract

The influence of electric field on a straight Dirichlet waveguide with Neumann window(s) of arbitrary length L is studied theoretically for 2D and 3D geometries. The energy spectrum for the corresponding bound states was obtained and their dependence on was analysed. At low , the boundary of the window(s) influenced the properties of the particle contrary to the high case, where the energies and localization of particle were seen similar in all the geometries. The critical lengths Lcr, at which higher excited state emerges into the continuum, at different were found and their behavior was explained qualitatively. It was found that at high , the critical lengths of Dirichlet-Neumann boundary window approach the Neumann-Neumann boundary window. This is due to the increase in the fundamental propagation threshold of transverse modes in the wall and window region. On the other hand, the Neumann-Dirichlet boundary window showed an opposite behavior. Furthermore, the polarization of ground state was obtained for different geometries. It was proved that at small L, the polarization reduces to its 1D case. A mathematical treatment and semi classical explanation was provided. Comparative analysis of the 2D and 3D geometries reveals their qualitative similarity and quantitative differences.
带 Neumann 窗口的 Dirichlet 波导在横向电场中的边界态演化
理论研究了电场对带有任意长度 L 的诺伊曼窗口的直狄利克特波导的影响。获得了相应束缚态的能谱,并分析了它们对电场的依赖性。在低频情况下,窗口边界对粒子特性的影响与高频情况相反,在高频情况下,粒子的能量和定位在所有几何形状中都是相似的。我们发现了不同的临界长度 Lcr,在这些临界长度上,高激发态会出现在连续体中,并定性地解释了它们的行为。研究发现,在高Ⅴ阶段,迪里赫特-诺伊曼边界窗口的临界长度接近诺伊曼-诺伊曼边界窗口。这是由于横向模态在壁和窗区域的基本传播阈值增大所致。另一方面,Neumann-Dirichlet 边界窗口则表现出相反的行为。此外,还得到了不同几何形状下基态的极化情况。结果证明,在 L 较小的情况下,极化会还原为一维情况。研究提供了数学处理和半经典解释。对二维和三维几何形状的比较分析表明了它们在质量上的相似性和数量上的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Physica Scripta
Physica Scripta 物理-物理:综合
CiteScore
3.70
自引率
3.40%
发文量
782
审稿时长
4.5 months
期刊介绍: Physica Scripta is an international journal for original research in any branch of experimental and theoretical physics. Articles will be considered in any of the following topics, and interdisciplinary topics involving physics are also welcomed: -Atomic, molecular and optical physics- Plasma physics- Condensed matter physics- Mathematical physics- Astrophysics- High energy physics- Nuclear physics- Nonlinear physics. The journal aims to increase the visibility and accessibility of research to the wider physical sciences community. Articles on topics of broad interest are encouraged and submissions in more specialist fields should endeavour to include reference to the wider context of their research in the introduction.
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