Numerical investigation of high-contrast ultrafast all-optical switching in low-refractive-index polymeric photonic crystal nanobeam microcavities

Ziming Meng, X. Zhong, Chen Wang, Zhiyuan Li
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引用次数: 10

Abstract

With the development of micro- or nano-fabrication technologies, great interest has been aroused in exploiting photonic crystal nanobeam structures. In this article the design of high-quality-factor (Q) polymeric photonic crystal nanobeam microcavities suitable for realizing ultrafast all-optical switching is presented based on the three-dimensional finite-difference time-domain method. Adopting the pump-probe technique, the ultrafast dynamic response of the all-optical switching in a nanobeam microcavity with a quality factor of 1000 and modal volume of 1.22 (λ/n)3 is numerically studied and a switching time as fast as 3.6 picoseconds is obtained. Our results indicate the great promise of applying photonic crystal nanobeam microcavities to construct integrated ultrafast tunable photonic devices or circuits incorporating polymer materials with large Kerr nonlinearity and ultrafast response speed.
低折射率聚合物光子晶体纳米微腔中高对比度超快全光开关的数值研究
随着微纳米加工技术的发展,光子晶体纳米束结构的研究引起了人们极大的兴趣。本文基于三维时域有限差分法,设计了适合于实现超快全光开关的高质量因子(Q)聚合物光子晶体纳米束微腔。采用泵浦探针技术,对质量因子为1000、模态体积为1.22 (λ/n)3的纳米束微腔中全光开关的超快动态响应进行了数值研究,获得了快至3.6皮秒的开关时间。我们的研究结果表明,应用光子晶体纳米束微腔来构建集成超快可调谐光子器件或集成具有大克尔非线性和超快响应速度的聚合物材料的电路具有很大的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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