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An Improved Design for an All-Optical Flip-Flop Based on a Nonlinear 3-Sections DFB Laser Cavity

机译:基于非线性三节DFB激光腔的全光触发器的改进设计

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A new all optical flip-flop based on a 3-sections nonlinear semiconductor DFB laser structure is proposed and simulated. The operation of the device does not require a holding beam. Electrical current injection into an active layer provides optical gain to the laser mode. The wave-guiding layer consists of a linear grating section centered between 2 detuned nonlinear grating sections. The average refractive index in the nonlinear sections is slightly higher than the refractive index of the middle section. A negative nonlinear refractive index coefficient exists along the nonlinear sections. In the “OFF” state, the DFB structure does not provide enough optical feedback to lase due to the detuned sections. At high light intensity in structure, “ON” state, detuning decreases and the DFB structure allows for a laser mode that sustains the decrease in detuning to exist. The nonlinearity is provided by direct photon absorption at the Urbach tail. Numerical simulations using GPGPU computing show nanoseconds transition times between “OFF” and “ON” states.
机译:提出并仿真了一种基于三段式非线性半导体DFB激光器结构的新型全光触发器。设备的操作不需要固定梁。注入有源层中的电流为激光模式提供了光学增益。波导层由以两个失谐的非线性光栅部分为中心的线性光栅部分组成。非线性部分的平均折射率略高于中间部分的折射率。沿着非线性部分存在负的非线性折射率系数。在“关闭”状态下,由于失谐的部分,DFB结构无法提供足够的光反馈以激发激光。在结构的高光强度下,在“ ON”状态下,失谐减小,并且DFB结构允许维持失谐减小的激光模式存在。非线性由Urbach尾部的直接光子吸收提供。使用GPGPU计算的数值模拟显示了“ OFF”和“ ON”状态之间的纳秒级转换时间。

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