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Enhancement of power transfer in periodic array of optical waveguides via intermediate Bloch states

机译:通过中间布洛赫状态增强光波导周期阵列中的功率传输

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摘要

A directional coupling mechanism between different waveguides in a periodic array of waveguides is suggested. The optical power transfer between two different waveguides is mediated by the coupling between zero-order modes of two of the waveguides and the second band of the periodic structure. Analytical solutions for the no-detuning (narrow band) and far-from-resonance cases are presented. The far-from-resonance case is shown to resemble a simple two-mode system with complete optical power transfer between the two waveguides, coupled by localized gratings. The transfer is mediated by the second band of the periodic structure. The transition length depends strongly on the shape of the perturbation, and depends exponentially on the distance between the waveguides, yet it allows us to transfer power from one waveguide to another at such distances, for which the transition via conventional directional tunneling mechanism is impossible. Our analytical results are supported by numerical calculations carried out for a model problem with realistic parameters.
机译:建议在波导的周期性阵列中的不同波导之间的定向耦合机制。两个不同波导之间的光功率传输是通过两个波导的零阶模式与周期结构的第二个波段之间的耦合来介导的。给出了无失谐(窄带)和远离共振情况的解析解。所示的远离共振的情况类似于一个简单的双模系统,在两个波导之间通过局部光栅耦合完成了完全的光功率传输。该转移由周期性结构的第二带介导。过渡长度在很大程度上取决于扰动的形状,并且与波导之间的距离呈指数关系,但它允许我们以这样的距离将功率从一个波导传输到另一波导,因此,无法通过常规的定向隧穿机制进行过渡。对于具有实际参数的模型问题,通过进行数值计算可以支持我们的分析结果。

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