Double resonance between corner states in distinct higher-order topological phases

拓扑(电路) 拓扑绝缘体 Dirac(视频压缩格式) 光子学 物理 共振(粒子物理) 拓扑序 相(物质) 非线性系统 高次谐波产生 量子力学 数学 量子 组合数学 中微子 激光器
作者
José A. Medina-Vázquez,Evelyn Yamel González Ramírez,José G Murillo
出处
期刊:Journal of Physics: Condensed Matter [IOP Publishing]
卷期号:35 (38): 385401-385401
标识
DOI:10.1088/1361-648x/acddc4
摘要

Abstract Recent studies have shown that higher-order topologies in photonic systems lead to a robust enhancement of light–matter interactions. Moreover, higher-order topological phases have been extended to systems even without a band gap, as in Dirac semimetals. In this work, we propose a procedure to simultaneously generate two distinctive higher-order topological phases with corner states that allow a double resonant effect. This double resonance effect between the higher-order topological phases, was obtained from the design of a photonic structure with the ability to generate a higher-order topological (HOTI) insulator phase in the first bands and a higher-order Dirac half-metal phase (HODSM). Subsequently, using the corner states in both topological phases, we tuned the frequencies of both corner states such that they were separated in frequency by a second harmonic. This idea allowed us to obtain a double resonance effect with ultra-high overlap factors, and a considerable improvement in the nonlinear conversion efficiency. These results show the possibility of producing a second-harmonic generation with unprecedented conversion efficiencies in topological systems with simultaneous HOTI and HODSM phases. Furthermore, since the corner state in the HODSM phase presents an algebraic 1/ r decay, our topological system can be helpful in experiments about the generation of nonlinear Dirac-ligh–matter interactions.
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