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Highly tunable dual bound states in the continuum in bulk Dirac semimetal metasurface
Applied Physics Express ( IF 2.3 ) Pub Date : 2021-03-10 , DOI: 10.35848/1882-0786/abe98d
Changchun Ma 1 , Qi Lin 1, 2 , Lingling Wang 2 , Kai Huang 1
Affiliation  

We present a bulk Dirac semimetal (BDS) metasurface to realize tunable dual bound states in the continuums (BICs). The dual polarization-dependent BICs can transform into quasi-BICs with EIT or Fano lineshapes by breaking the structural symmetry. The excitation of quasi-BICs can attribute to the coupling between magnetic quadrupole mode and electric dipole mode (quasi-BIC I), or the coupling of two magnetic quadrupole modes (quasi-BIC II). The BIC resonant wavelength can be dynamically tuned while maintaining the spectral lineshape by varying the Fermi energy of BDS without re-optimizing the geometrical structures, which provides a new route for ultra-compact active BIC device.



中文翻译:

体狄拉克半金属超表面连续介质中高度可调的双束缚态

我们提出了一种块状狄拉克半金属 (BDS) 超表面,以实现连续体 (BIC) 中的可调双束缚态。双极化依赖的 BICs 可以通过破坏结构对称性转化为具有 EIT 或 Fano 线形的准 BICs。准 BIC 的激发可归因于磁四极子模式和电偶极子模式之间的耦合(准 BIC I),或两个磁四极子模式的耦合(准 BIC II)。通过改变 BDS 的费米能​​量,无需重新优化几何结构,BIC 谐振波长可以动态调谐,同时保持谱线形状,为超紧凑有源 BIC 器件提供了新途径。

更新日期:2021-03-10
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