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- W2985792202 abstract "In this paper, an interface with two 2D photonic crystals is constructed with different rectangular lattices of the same material, shape, and size of dielectric rods, which produce interface states. The interface states are analyzed with respect to the Zak phase and surface impedance. The retainability of the interface states with dislocated and non-dislocated photonic bandgaps (PBGs) is investigated. In addition, we study the relationship between the length/width ratio of the rectangular lattice and the Zak phase, when the length/width ratio of the rectangular lattices changes. It is found that, when the interface states are realized by changing the length/width ratio of rectangular lattices, the retainability of the interface states with dislocated PBGs depends mainly on the position of the PBGs. On the other hand, the retainability of the interface states with non-dislocated PBGs mainly depends on the Zak phases of the bands. For the selected ky in this paper, the retainability of the interface states with dislocated PBGs is better than for non-dislocated PBGs, and the former is adjustable. A more detailed examination confirms that these conclusions are universally applicable to rectangular photonic crystals with different materials, shapes, and sizes of dielectric rods. These results can lead to new ways to produce interface states easily, for only one kind of dielectric rod. In addition, these outcomes may enable the construction of optical waveguides with strong retainability in the future." @default.
- W2985792202 created "2019-11-22" @default.
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- W2985792202 date "2019-11-03" @default.
- W2985792202 modified "2023-09-27" @default.
- W2985792202 title "Interface states of simple rectangular photonic crystals with dislocated and non-dislocated photonic bandgaps" @default.
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