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Analysis of mode characteristics for equilateral-polygonal resonators with a center hole

机译:具有中心孔的等边多边形谐振器的模式特性分析

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摘要

Mode characteristics for equilateral triangles, squares, and hexagonal resonators with a center hole are numerically simulated by the finite-different time domain (FDTD) technique. The center hole does not break the symmetry behavior of the original resonators and can result in modification of the mode field patterns and mode Q factors. In an equilateral triangle resonator the center hole can suppress the symmetry state of degenerate states with the merit of single mode operation. In a square resonator, the Q factor can be enhanced for some modes with a suitable size of the hole. For a hexagonal resonator with a side length of 1 mu m and a refractive index of 3.2, the mode Q factors first gradually decrease with the increase of the hole diameter for modes at a wavelength of about 1500 nm, then the modes transform to that of a microdisk with a jump of the mode wavelength as the hole diameter approaches 0.7 mu m. Finally, the mode Q factors greatly enhance as the hole diameter reaches about 1 mu m. The results indicate that the center hole can greatly modify mode characteristics, especially that of the mode Q factor.
机译:通过有限差分时域(FDTD)技术对带有中心孔的等边三角形,正方形和六边形谐振器的模式特性进行了数值模拟。中心孔不会破坏原始谐振器的对称行为,并且会导致模式场模式和模式Q因子的修改。在等边三角形谐振器中,中心孔可以利用单模操作的优点抑制简并状态的对称状态。在方谐振器中,对于某些具有合适孔尺寸的模式,可以提高Q因子。对于边长为1μm,折射率为3.2的六边形谐振器,对于波长约为1500 nm的模式,模式Q因子首先随着孔径的增加而逐渐减小,然后模式转换为当孔径接近0.7微米时,模式波长跳跃的微型磁盘。最后,随着孔直径达到约1微米,模式Q因子大大提高。结果表明,中心孔可以极大地改变模式特性,尤其是模式Q因子。

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