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All-Optical Format Conversion and Wavelength Conversion Based on Four-Wave Mixing in HNL-PCF

机译:HNL-PCF中基于四波混频的全光格式转换和波长转换

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Conversion from a 10 Gb/s non-return-to-zero (NRZ) signal at 1550 nm to a 10 Gb/s return-to-zero (RZ) signal at 1561 nm has been experimentally verified based on four-wave mixing (FWM) in a highly nonlinear photonic crystal fiber (HNL-PCF) without the need of an extra NRZ-to-RZ conversion step.The signal light at 1550nm was modulated by a NRZ electric pulse pattern. The pump light at 1555.540 nm generated by a mode locked laser (MLL) was modulated by a clock signal. When these two lights were controlled strictly and amplified to about 22dBm, the FWM effect happens in HNL-PCF. Two new spectrum peaks were achieved at 1545 nm and 1561 nm respectively. Then the peak at 1561nm was filtered out and discussed.Then we changed the wavelength of signal light from 1543nm to 1569nm. The FWM effect appeared in this whole wavelength range. But the best quality of conversion signal was achieved at 1550nm. So when the signal at 1561nm wasfiltered out , it was a pulse signal carrying information. The signals at other wavelength were pulse signals without information.
机译:基于四波混频,已经通过实验验证了从1550 nm的10 Gb / s非归零(NRZ)信号到1561 nm的10 Gb / s归零(RZ)信号的转换(高度非线性的光子晶体光纤(HNL-PCF)中的FWM),而无需额外的NRZ到RZ转换步骤。 1550nm处的信号光通过NRZ电脉冲模式进行调制。由锁模激光器(MLL)产生的1555.540 nm的泵浦光由时钟信号调制。当严格控制这两个灯并将其放大到大约22dBm时,在HNL-PCF中会发生FWM效应。在1545 nm和1561 nm处分别获得了两个新的光谱峰。然后滤出并讨论了1561nm处的峰。 然后,我们将信号光的波长从1543nm更改为1569nm。 FWM效应出现在整个波长范围内。但是在1550nm处获得了最佳的转换信号质量。所以当1561nm的信号是 过滤掉,这是一个携带信息的脉冲信号。其他波长的信号是没有信息的脉冲信号。

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