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Optimization of an Asymmetric DFB Laser Used as All-Optical Flip-Flop

机译:全光触发器用非对称DFB激光器的优化

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We have numerically optimized the speed of an all-optical flip-flop based on an antireflection-coated /4 phase-shifted distributed feedback (DFB) laser. Numerical results show that by engineering the grating of the DFB laser and making the coupling coefficient asymmetrical, fall times reduce by a factor of 2 compared with a standard laser design. It is also shown that the confinement factor in the quantum wells and the length of the laser cavity have a significant impact on the flip-flop operation. The switching between two states can be realized using pulses with energies below 125 fJ and with a duration of 10 ps. The switching time can be reduced to 5 ps and the switching rate increased up to 10 GHz.
机译:我们已经基于抗反射涂层/ 4相移分布式反馈(DFB)激光器在数值上优化了全光触发器的速度。数值结果表明,通过设计DFB激光器的光栅并使耦合系数不对称,与标准激光器设计相比,下降时间减少了2倍。还表明,量子阱中的限制因子和激光腔的长度对触发器的操作有重大影响。可以使用能量低于125 fJ且持续时间为10 ps的脉冲来实现两种状态之间的切换。开关时间可以减少到5 ps,开关速率可以提高到10 GHz。

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