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Optical memory based on ultrafast wavelength switching in a bistable microlaser

机译:基于双稳态微激光器中超快波长切换的光学存储器

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摘要

We propose an optical memory cell based on ultrafast wavelength switching in coupled-cavity microlasers, featuring bistability between modes separated by several nanometers. A numerical implementation is demonstrated by simulating a two-dimensional photonic crystal microlaser. Switching times of less than 10 ps, switching energy around 15-30 fJ, and on-off contrast of more than 40 dB are achieved. Theoretical guidelines for optimizing the performance of the memory cell in terms of switching time and energy are drawn.
机译:我们提出了一种基于光耦合腔微激光器中超快波长切换的光存储单元,其特征在于相隔数纳米的模式之间的双稳态。通过模拟二维光子晶体微激光器证明了数值实现。开关时间小于10 ps,开关能量在15-30 fJ左右,开关对比度大于40 dB。提出了在开关时间和能量方面优化存储单元性能的理论指导。

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