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Optimization of triangular lattice defect in dynamic photonic crystal structures for optical storage and processing

机译:用于光学存储和处理动态光子晶体结构中三角格缺陷的优化

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A triangular lattice GaAs photonic crystal structure was proposed in a previous work [1] for optical storage in a dynamic modulation process. This work presents a defect optimization of this tunable coupled resonator array. Preserving translational invariance and adiabaticity, this structure exhibits an optical analogue to electromagnetic induced transparency. This triangular lattice structure shows an advantage over the previously proposed square one [2, 3] in compressing higher bandwidth pulses. The main problem of this structure is the introduction of higher group-velocity dispersion. In the present work, the structure is redesigned so as to change the operating range of frequency for the propagating pulse. In this way, the group-velocity dispersion is eliminated to values close to that of the square lattice structure. The final design, therefore, combines both higher compressible bandwidth and lower group-velocity dispersion in addition to a fabrication advantage.
机译:在动态调制过程中,在先前的工作[1]中提出了一种三角形晶格GaAs光子晶体结构。该工作介绍了这种可调耦合谐振器阵列的缺陷优化。保持平移的不变性和绝热性,该结构表现出用于电磁诱导的透明度的光学模拟。该三角形晶格结构在压缩更高的带宽脉冲中,示出了先前提出的方形一个[2,3]的优点。该结构的主要问题是引入较高的群体速度分散。在本作工作中,该结构被重新设计,以改变传播脉冲的频率的操作范围。以这种方式,消除了组速度分散的靠近方形晶格结构的值。因此,除了制造优势之外,最终设计还结合了较高的可压缩带宽和较低的组速度分散。

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