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Experimental Research on 10 Gb/s All-Optical Logic Gates with Return-to-zero Data in High Nonlinear Fiber

机译:高非线性光纤中具有归零数据的10 Gb / s全光逻辑门的实验研究

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摘要

A novel scheme to realize all-optical logic gates is proposed bases on nonlinear polarization rotation (NPR) in high nonlinear fiber (HNLF). Two optical signals A and B with return-to-zero data format are injected into the HNLF together with a continuous wave C. Thanks to the optical power variation in HNLF, nonlinear birefringence will be induced between the two polarization axes. Both the optical signal and continuous wave are filtered out at the output of HNLF. By adjusting the optical power and polarization of the optical signal as well as the polarization of the polarizer with respect to the polarization of optical signal/continuous wave, multiple all-optical logic gates can be realized. The theoretical analysis of the optical logic gates based on NPR in HNLF is provided. And we demonstrated the feasibility of the scheme by realizing all optical "and" "not" "nxor" . "(-A)· B ","A·(-B)" , half-adder and half-subtracter at 10Gb/s operation.
机译:基于高非线性光纤(HNLF)中的非线性偏振旋转(NPR),提出了一种实现全光逻辑门的新方案。将具有归零数据格式的两个光信号A和B与连续波C一起注入HNLF中。由于HNLF中的光功率变化,两个偏振轴之间将产生非线性双折射。光信号和连续波都在HNLF的输出处被滤除。通过相对于光信号/连续波的偏振调整光功率和光信号的偏振以及偏振器的偏振,可以实现多个全光逻辑门。对HNLF中基于NPR的光逻辑门进行了理论分析。并且我们通过实现所有光学“和”“非”“ nxor”论证了该方案的可行性。 “(-A)·B”,“ A·(-B)”,半加法器和半减法器以10Gb / s的速度运行。

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