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首页> 外文期刊>Journal of Lightwave Technology >Design considerations of all-optical A/D conversion: nonlinear fiber-optic Sagnac-loop interferometer-based optical quantizing and coding
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Design considerations of all-optical A/D conversion: nonlinear fiber-optic Sagnac-loop interferometer-based optical quantizing and coding

机译:全光A / D转换的设计注意事项:基于非线性光纤Sagnac环路干涉仪的光学量化和编码

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摘要

The authors describe in detail the design considerations of our previously proposed novel optical quantizing and coding method for all-optical analog-to-digital (A/D) conversion using nonlinear optical switches based on the Sagnac interferometer. The multiperiod transfer function, which is the key to quantizing and coding, is achieved through a careful design of the Sagnac interferometer. In the experiments, the intensity of the pulse train input to our A/D converter is manually changed, and the corresponding digital signals are successfully mapped generated. Although the input-pulse trains are not the sampling of real analog signal, the principle of our proposed 3-bit A/D conversion at a 10 gigasample per second (Gsps) rate is demonstrated. The proposed optical quantizing and coding, combined with existing optical sampling techniques, will enable ultrafast photonic A/D conversion without electronics. The potential in the frequency regime of over a few hundred gigasamples per second was investigated by using an optical switch that utilizes the optical Kerr effect for fast operation. It was found out that the wavelength allocations and temporal widths of control and probe pulses have to be optimized with respect to the group-velocity dispersion of highly nonlinear fiber.
机译:作者详细描述了我们先前提出的新颖的光学量化和编码方法的设计注意事项,该方法用于基于Sagnac干涉仪的使用非线性光学开关的全光学模数(A / D)转换。多周期传递函数是量化和编码的关键,它是通过仔细设计Sagnac干涉仪来实现的。在实验中,手动更改输入到我们的A / D转换器的脉冲序列的强度,并成功映射生成相应的数字信号。尽管输入脉冲序列不是对真实模拟信号的采样,但我们以10 Gb / s(Gsps)的速率演示了我们提出的3位A / D转换的原理。拟议的光学量化和编码,再结合现有的光学采样技术,将能够实现超快的光子A / D转换,而无需电子设备。通过使用利用光学Kerr效应实现快速运行的光学开关,研究了每秒超过数百千兆采样的频率范围内的电势。发现必须针对高度非线性光纤的群速度色散优化控制脉冲和探测脉冲的波长分配和时间宽度。

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