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High-fidelity, broadband stimulated-Brillouin-scattering-based slow light using fast noise modulation.

机译:采用快速噪声调制的高保真,宽带激励 - 基于布里渊散射的慢光。

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摘要

We demonstrate a 5-GHz-broadband tunable slow-light device based on stimulated Brillouin scattering in a standard highly-nonlinear optical fiber pumped by a noise-current-modulated laser beam. The noisemodulation waveform uses an optimized pseudo-random distribution of the laser drive voltage to obtain an optimal flat-topped gain profile, which minimizes the pulse distortion and maximizes pulse delay for a given pump power. In comparison with a previous slow-modulation method, eye-diagram and signal-to-noise ratio (SNR) analysis show that this broadband slow-light technique significantly increases the fidelity of a delayed data sequence, while maintaining the delay performance. A fractional delay of 0.81 with a SNR of 5.2 is achieved at the pump power of 350 mW using a 2-km-long highly nonlinear fiber with the fast noise-modulation method, demonstrating a 50% increase in eye-opening and a 36% increase in SNR in the comparison.
机译:我们演示了在受噪声电流调制的激光束泵浦的标准高度非线性光纤中,基于受激布里渊散射的5 GHz宽带可调慢光设备。噪声调制波形使用激光驱动电压的优化伪随机分布来获得最佳的平顶增益曲线,从而在给定泵浦功率下将脉冲失真最小化并将脉冲延迟最大化。与以前的慢调制方法相比,眼图和信噪比(SNR)分析表明,这种宽带慢光技术显着提高了延迟数据序列的保真度,同时保持了延迟性能。使用2 km长的高度非线性光纤和快速噪声调制方法,在350 mW的泵浦功率下,可实现0.81的分数延迟和5.2的SNR,这表明睁眼增加了50%,而睁眼增加了36%比较中信噪比增加。

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