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Theoretical Study of Ferroelectric Barium Strontium Titanate-Based One-Dimensional Tunable Photonic Crystals

机译:铁电钡锶基一维可调光子晶体的理论研究

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Tunable photonic crystals (PCs) have attracted much attention in the past decade because of their various applications such as ultra-fast optical filters and optical waveguides with add-drop functionalities. A common means of tuning PC is by changing the refractive indices of the constituent materials via the linear or quadratic electro-optic effect, which leads to a shift of the bandgap positions of the PC. The lead-free material, barium strontium titanate (BST), has a high quadratic electro-optic coefficient comparable to lanthanum-modified lead zirconate titanate (PLZT), and is a promising candidate as a lead-free tunable PC. Here we present a study on the feasibility of developing a one-dimensional tunable PC based on a BST and magnesium oxide (MgO) multilayer structure. The bandgap diagram of the PC structure is calculated using the plane-wave expansion (PWE) method. For a 1% change in the refractive index of BST, a 0.99% frequency shift in the bandgap can be achieved. It corresponds to a wavelength shift of 15.4 nm at a wavelength of 1550nm. Design of a tunable optical filter at a wavelength of 1550nm based on a BST/MgO 1D PC is suggested. The transmission property of the 1D PC is further verified by simulation, using the transfer matrix method (TMM).
机译:由于它们的各种应用,如超快速光学过滤器和附加功能的光波导,可调谐光子晶体(PCS)在过去十年中引起了很多关注。通过线性或二次电光效应改变构成材料的折射率,这导致PC的带隙位置的偏移来改变构成材料的常用手段。无铅材料,钛酸锶锶(BST),具有与镧改性锆钛酸锆(PLZT)相当的高二次电光系数,并且是一个有前途的候选者作为无铅可调PC。在这里,我们展示了基于BST和氧化镁(MgO)多层结构开发一维可调PC的可行性的研究。使用平面波扩展(PWE)方法计算PC结构的带隙图。对于BST的折射率的1%变化,可以实现带隙的0.99%的频移。它对应于1550nm波长的15.4nm的波长偏移。建议在基于BST / MGO 1D PC的波长为1550nm的可调谐滤光器的设计。使用传递矩阵方法(TMM),通过模拟进一步验证1D PC的传输属性。

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