A scheme of triangular-shaped pulses with full duty cycle generation is proposed and analyzed.Benefiting from the feature of orthogonal polarization,two approximate sinusoidal signals on different polarization states ...A scheme of triangular-shaped pulses with full duty cycle generation is proposed and analyzed.Benefiting from the feature of orthogonal polarization,two approximate sinusoidal signals on different polarization states can be combined without inducing coherent interference.By tuning the time mismatching between the two signals,an approximately triangular-shaped profile can be obtained in the optical intensity.It is found that the modulation index β is no longer a fixed one,but it can be aligned within a proper range of 0.92 to 1.57.To evaluate the proposal,impacts of radio frequency voltage fluctuation,bias voltage drift,and time mismatching are discussed.Within the defined fitting error(η≤ 3%),the tolerable range of the modulation index,time mismatching,and voltage have been found,which insures a simple operation in practice.展开更多
An approach for full duty frequency-doubled triangle shape lightwave generation is proposed and demonstrated.It requires a dual-parallel Mach–Zehnder modulator(DP-MZM) driven by a sinusoidal signal. A stop band fil...An approach for full duty frequency-doubled triangle shape lightwave generation is proposed and demonstrated.It requires a dual-parallel Mach–Zehnder modulator(DP-MZM) driven by a sinusoidal signal. A stop band filter is coupled to filter out two undesired sidebands. By tuning the bias voltage applied to the DP-MZM, the output optical intensity with a full duty cycle triangle shape profile can be obtained. It is found that the required modulation index is no longer a fixed one. It can vary within a range, without degrading the target waveform. The principle is analyzed by theory and evaluated by simulation. A proof-of-concept experiment is also conducted.Good agreements between theoretical prediction and experimental results have been found. This approach might be attractive due to the feature of a variable modulation index, which insures simple operation in practice.展开更多
基金supported by the National Natural Science Foundation of China under Grant No.61405007
文摘A scheme of triangular-shaped pulses with full duty cycle generation is proposed and analyzed.Benefiting from the feature of orthogonal polarization,two approximate sinusoidal signals on different polarization states can be combined without inducing coherent interference.By tuning the time mismatching between the two signals,an approximately triangular-shaped profile can be obtained in the optical intensity.It is found that the modulation index β is no longer a fixed one,but it can be aligned within a proper range of 0.92 to 1.57.To evaluate the proposal,impacts of radio frequency voltage fluctuation,bias voltage drift,and time mismatching are discussed.Within the defined fitting error(η≤ 3%),the tolerable range of the modulation index,time mismatching,and voltage have been found,which insures a simple operation in practice.
基金supported in part by the National Natural Science Foundation of China under Grant No.61405007
文摘An approach for full duty frequency-doubled triangle shape lightwave generation is proposed and demonstrated.It requires a dual-parallel Mach–Zehnder modulator(DP-MZM) driven by a sinusoidal signal. A stop band filter is coupled to filter out two undesired sidebands. By tuning the bias voltage applied to the DP-MZM, the output optical intensity with a full duty cycle triangle shape profile can be obtained. It is found that the required modulation index is no longer a fixed one. It can vary within a range, without degrading the target waveform. The principle is analyzed by theory and evaluated by simulation. A proof-of-concept experiment is also conducted.Good agreements between theoretical prediction and experimental results have been found. This approach might be attractive due to the feature of a variable modulation index, which insures simple operation in practice.