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干涉在开放系统中捕获波:连续谱中的束缚态。

Interference traps waves in an open system: bound states in the continuum.

作者信息

Sadreev Almas F

机构信息

Kirensky Institute of Physics, Federal Research Center KSC SB RAS, 660036 Krasnoyarsk, Russia.

出版信息

Rep Prog Phys. 2021 Apr 27;84(5). doi: 10.1088/1361-6633/abefb9.

Abstract

I review the four mechanisms of bound states in the continuum (BICs) in the application of microwave and acoustic cavities open to directional waveguides. The most simple are symmetry-protected BICs, which are localized inside the cavity because of the orthogonality of the eigenmodes to the propagating modes of waveguides. However, the most general and interesting is the Friedrich-Wintgen mechanism, when the BICs are the result of the fully destructive interference of outgoing resonant modes. The third type of BICs, Fabry-Perot BICs, occurs in a double resonator system when each resonator can serve as an ideal mirror. Finally, the accidental BICs can be realized in the open cavities with no symmetry like the open Sinai billiard in which the eigenmode of the resonator can become orthogonal to the continuum of the waveguide accidentally due to a smooth deformation of the eigenmode. We also review the one-dimensional systems in which the BICs occur owing to the fully destructive interference of two waves separated by spin or polarization or by paths in the Aharonov-Bohm rings. We make broad use of the method of effective non-Hermitian Hamiltonian equivalent to the coupled mode theory, which detects BICs by finding zero-width resonances.

摘要

我回顾了连续统束缚态(BICs)在通向定向波导的微波和声学腔应用中的四种机制。最简单的是对称性保护的BICs,由于本征模与波导传播模的正交性,它们局域在腔内。然而,最普遍且有趣的是弗里德里希 - 温特根机制,此时BICs是出射共振模完全相消干涉的结果。第三种类型的BICs,即法布里 - 珀罗BICs,出现在双谐振器系统中,其中每个谐振器都可作为理想镜子。最后,偶然BICs可在无对称性的开放腔中实现,如开放的 Sinai 台球,其中谐振器的本征模可因本征模的平滑变形而偶然与波导的连续统正交。我们还回顾了一维系统,其中BICs由于由自旋或极化或阿哈罗诺夫 - 玻姆环中的路径分隔的两列波的完全相消干涉而出现。我们广泛使用等效于耦合模理论的有效非厄米哈密顿量方法,该方法通过找到零宽度共振来检测BICs。

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