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连续谱中的莫尔准束缚态。

Moiré Quasibound States in the Continuum.

作者信息

Huang Lei, Zhang Weixuan, Zhang Xiangdong

机构信息

Key Laboratory of Advanced Optoelectronic Quantum Architecture and Measurements of Ministry of Education, Beijing Key Laboratory of Nanophotonics & Ultrafine Optoelectronic Systems, School of Physics, Beijing Institute of Technology, 100081, Beijing, China.

出版信息

Phys Rev Lett. 2022 Jun 24;128(25):253901. doi: 10.1103/PhysRevLett.128.253901.

Abstract

The novel physics of twisted bilayer graphene has motivated extensive studies of magic-angle flat bands hosted by moiré structures in electronic, photonic, and acoustic systems. On the other hand, bound states in the continuum (BICs) have also attracted great attention in recent years because of their potential applications in the field of designing superior optical devices. Here, we combine these two independent concepts to construct a new optical state in a twisted bilayer photonic crystal slab, which is called as moiré quasi-BIC, and numerically demonstrate that such an exotic optical state possesses dual characteristics of moiré flat bands and quasi-BICs. To illustrate the mechanism for the formation of moiré flat bands, we develop an effective model at the center of the Brillouin zone and show that moiré flat bands could be fulfilled by balancing the interlayer coupling strength and the twist angle around the band edge above the light line. Moreover, by decreasing the twist angle of moiré photonic crystal slabs with flat bands, it is shown that the moiré flat-band mode at the Brillouin center gradually approaches a perfect BIC, where the total radiation loss from all diffraction channels is significantly suppressed. To clarify the advantage of moiré quasi-BICs, enhanced second-harmonic generation (SHG) is numerically proven with a wide-angle optical source. The efficiency of SHG assisted by designed moiré quasi-BICs can be greatly improved compared with that based on dispersive quasi-BICs with similar quality factors.

摘要

扭曲双层石墨烯的新奇物理特性激发了人们对电子、光子和声子系统中莫尔结构所承载的魔角平带的广泛研究。另一方面,连续统中的束缚态(BICs)近年来也因其在设计卓越光学器件领域的潜在应用而备受关注。在此,我们将这两个独立的概念结合起来,在扭曲双层光子晶体平板中构建一种新的光学态,即莫尔准BIC,并通过数值模拟证明这种奇异的光学态具有莫尔平带和准BIC的双重特性。为了阐明莫尔平带的形成机制,我们在布里渊区中心建立了一个有效模型,并表明通过平衡层间耦合强度和光线上方带边周围的扭曲角,可以实现莫尔平带。此外,通过减小具有平带的莫尔光子晶体平板的扭曲角,结果表明布里渊中心的莫尔平带模式逐渐趋近于完美的BIC,此时所有衍射通道的总辐射损耗被显著抑制。为了阐明莫尔准BIC的优势,我们通过数值模拟证明了在宽角度光源下增强的二次谐波产生(SHG)。与基于具有相似品质因数的色散准BIC相比,设计的莫尔准BIC辅助的SHG效率可以大大提高。

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