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High-Q resonances with low azimuthal indices in all-dielectric high-index nanoparticles

机译:全介电高折射率纳米粒子中具有低方位角的高Q共振

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Recently, a novel class of high-Q optical resonators based on all-dielectric subwavelength nanoparticles with high refractive index has been proposed [M. V. Rybin, et al, arXiv:1706.02099, 2017]. Here we study a complex spectrum of such nanoscale resonators by means of the resonant-state expansion, treating the problem as a non-Hermitian eigenproblem. We show that the high-Q features can be described within the mechanism of external coupling of open channels via the continuum. For ceramic resonators with permittivity e = 40, we demonstrate that the quality factor of a trapped mode with a low azimuthal index could reach the value Q = 104.
机译:近来,已经提出了基于具有高折射率的全介电亚波长纳米颗粒的新型一类高Q光学谐振器[M. V. Rybin等人,arXiv:1706.02099,2017]。在这里,我们通过共振态扩展研究了此类纳米级共振器的复杂光谱,将该问题视为非厄密特本征问题。我们表明,可以通过连续体在开放通道的外部耦合机制内描述高Q特性。对于介电常数e = 40的陶瓷谐振器,我们证明了低方位角陷波模式的品质因数可以达到Q = 104。

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