首页> 外文会议>Conference on Integrated Optics and Photonic Integrated Circuits; 20040427-20040429; Strasbourg; FR >Advanced modeling and design of ion-exchanged glass waveguides and devices
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Advanced modeling and design of ion-exchanged glass waveguides and devices

机译:离子交换玻璃波导和器件的高级建模和设计

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Glass waveguide devices fabricated by ion exchange have evolved to the point where conventional assumptions of waveguide symmetry and mutual independence are no longer valid. The modeling of ion-exchanged waveguide devices is far more complicated compared to, e.g., silica on Si waveguide devices. For example, during field-assisted ion exchange processes, the nonhomogeneity of ionic conductivity in the vicinity of the waveguide results in a time-dependent perturbation of the electric field. Previous studies have shown that the depth and vertical symmetry of buried waveguides are affected by the field perturbation. In this work, we describe an advanced modeling tool for guided-wave devices based on ion-exchanged glass waveguides. The effect of field perturbation, due not only to the conductivity profile, but also to the proximity of adjacent waveguides or partial masking during a field-assisted burial are accounted for. A semivectorial finite difference method is then employed to determine the modal properties of the waveguide structures.
机译:通过离子交换制造的玻璃波导器件已经发展到这样的地步,即波导对称性和相互独立性的传统假设不再有效。与例如硅基硅波导器件相比,离子交换波导器件的建模要复杂得多。例如,在场辅助离子交换过程中,波导附近离子电导率的不均匀性导致电场随时间的扰动。先前的研究表明,埋入式波导的深度和垂直对称性受场扰动的影响。在这项工作中,我们描述了一种基于离子交换玻璃波导的先进导波设备建模工具。不仅考虑了电导率分布,还考虑了场扰动的影响,这归因于在场辅助掩埋期间相邻的波导或局部掩蔽。然后采用半矢量有限差分法来确定波导结构的模态性质。

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