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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Realization of a multichannel drop filter using an ISO-centric all-circular photonic crystal ring resonator
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Realization of a multichannel drop filter using an ISO-centric all-circular photonic crystal ring resonator

机译:使用以ISO为中心的全圆形光子晶体环谐振器实现多通道掉落滤波器

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摘要

Here, by using a square-lattice-type photonic crystal (PhC) and an ISO-centric all-circular ring resonator (RR), a high efficiency in-plane multichannel drop filter (MCDF) is realized. By conducting full-spectrum transmission studies on available tuning parameters such as RR radius, RR refractive index, PhC lattice high and low refractive indices, and PhC lattice constant, the transmission behavior of each parameter is found in terms of blue or red shift wavelength dependencies. The single unit of the PhC-based filter is optimized to work at a desired optical wavelength (e.g., lambda(0) = 1550 nm). The MCDF is formed by cascading a desired number of the basic unit (e.g., five units), whereas using the knowledge learned from full-spectrum transmission behavior, each unit is proportionally tuned to operate at a desired different wavelength with an appropriately engineered channel spacing and crosstalk. The high efficiency dropping task of MCDF was successfully acquired with reasonable drop efficiencies as low as 76%, up to 100%. The crosstalk across all channels varied from - 10 db as the worst case down to - 50 db as the best case; this ensures a hopeful application of the MCDF.
机译:这里,通过使用平方晶格式光子晶体(PHC)和以呈形式的全圆环谐振器(RR),实现了高效的面内多通道掉滤波器(MCDF)。通过对可用调谐参数进行全频谱传输研究,例如RR半径,RR折射率,PHC晶格高和低折射率,以及PHC晶格常数,在蓝色或红移波长依赖性方面找到每个参数的传输行为。 PHC基滤波器的单个单元经过优化以在所需的光波长(例如,λ(0)= 1550nm)上工作。通过级联所需数量的基本单元(例如,五个单位)来形成MCDF,而使用从全频谱传输行为中学到的知识,则每个单元按比例调谐以在所需的不同波长下操作,具有适当的工程通道间距和串扰。 MCDF的高效滴加任务以合理的辍学效率低至76%,高达100%。所有通道的串扰从 - 10 dB变化为最坏的情况下至50 dB,是最好的情况;这确保了MCDF的充满希望的应用。

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