光控光子带隙逻辑元件

I. Nefedov, Y. Morozov, V. Gusyatnikov, A. Zheltikov
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引用次数: 2

摘要

由于光诱导产生非平衡电荷载流子而导致的GaAs折射率的变化显示出大大改变了一维GaAs/GaAlAs光子带隙结构的传输,从而允许创建低阈值光子晶体光学逻辑门。给出了用非线性PBG结构进行布尔代数的基本逻辑运算,包括双条件蕴涵、模二加法、Peirce箭头和析取。我们展示了如何在不同的逻辑脉冲功率密度下使用相同的GaAs/GaAlAs PBG结构执行不同的逻辑运算。
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Optically controlling photonic band gap logic elements
The change in the refractive index of GaAs due to the light-induced generation of nonequilibrium charge carriers is shown to substantially change the transmission of a one-dimensional GaAs/GaAlAs photonic band-gap structure, allowing low-threshold photonic-crystal optical logic gates to be created. Elementary logic operations of the Boolean algebra performed with nonlinear PBG structures, including the biconditional implication, module-two addition, Peirce's arrow, and disjunction, are demonstrated. We show how different logic operations can be performed with the same GaAs/GaAlAs PBG structure at different power densities of logic pulses.
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