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1.
<正>A novel scheme for ultra-wideband(UWB) monocycle pulse generation is proposed based on a dual-output push-pull Mach-Zehnder modulator(MZM).The MZM is driven by a non-return-to-zero(NRZ) data sequence and biased at the nonlinear point to generate edge-triggered pulses.To combine the complementary pulses forming a monocycle UWB pulse,two schemes are used to implement incoherent summation structure. A proof-of-concept experiment of UWB-over-fiber down-link system is set up.Further,by using digital signal processing(DSP) to calculate the bit error rate(BER),the transmission performance of two system configurations is studied.  相似文献   

2.
We theoretically prove that a conventional Mach-Zehnder modulator can generate an optical frequency comb with excellent spectral flatness. The modulator is asymmetrically dual driven by large amplitude sinusoidal signals with different amplitudes. The driving condition to obtain spectral flatness is analytically derived and optimized, yielding a simple formula. This formula also predicts the conversion efficiency and bandwidth of the generated frequency comb.  相似文献   

3.
By applying the microring resonator to the Mach-Zehnder (MZ) optical modulator and employing the super-linear phase change characteristic of the all-pass filter, the sublinear modulation curve of the conventional MZ modulator is highly linearized. With properly controlled power coupling between the microring and the arm of the MZ modulator, the third-order distortion can be suppressed. If the transmission coefficient is set between 0.25 and 0.42, the linearity range larger than 90% can be easily achieved. The maximum linearity range is even up to 99.5%.  相似文献   

4.
Zhang G  Zheng X  Li S  Zhang H  Zhou B 《Optics letters》2012,37(5):806-808
A postcompensation technique for nonlinearity of a Mach-Zehnder modulator in a radio-over-fiber (ROF) system is proposed and experimentally demonstrated based on second-order optical sideband processing and optical carrier band attenuation. The phase of the second-order optical sideband is shifted to suppress the third-order intermodulation distortion (IMD3) in a direct detection ROF link. The optical carrier band is attenuated to make two kinds of origins of IMD3 have equal intensity and cancel each other out. A spurious-free dynamic range of 124.8 dB·Hz(2/3) is achieved, which is about 25 dB more than that without compensation.  相似文献   

5.
<正>A novel approach to generate and distribute ultra-wideband(UWB) pulses in optical domain is investigated. In this proposed scheme,a dual-electrode Mach-Zehnder modulator(DE-MZM) is biased at its quadrature point so as to realize the linear response.Then the intensity of output optical field can be assumed to the subtraction of two input Gaussian pulses.If the input Gaussian pulses are with the same sharp parameters but different time delays,a quasi-monocycle-waveform UWB signal can be generated.If the input Gaussian pulses are with different amplitudes and full-width at half-maximum(FWHM),a quasi-doublet-waveform UWB signal can be generated.A transmission of the UWB signals through a 25-km single mode fiber is carried out successfully.The results in both temporal and frequency domains are also presented.  相似文献   

6.
We have proposed and demonstrated a novel Mach-Zehnder modulation technique which employs a 1 × 4 multimode interference MMI coupler and four optical phase-modulator waveguides to generate optical single sideband (SSB) signals in radio-over-fiber (ROF) transmission link. It is shown that when the RF (radio frequency) modulation index is large, the optical SSB signal generated by conventional modulation scheme contains a significant part of undesired higher order harmonics, accordingly, much distortion in the RF signal was detected at the base station (BS). However, the main undesired higher order harmonics can be suppressed using our proposed modulation scheme and the performance of the transmission links were largely improved in single-channel and dense wavelength-division multiplexing (DWDM) cases.  相似文献   

7.
Li J  Ning T  Pei L  Peng W  Jia N  Zhou Q  Wen X 《Optics letters》2011,36(19):3828-3830
A photonic approach to generate triangular waveform signals is proposed and analyzed. With active bias control, two sub-MZMs (MZ-a and MZ-b) of a dual-parallel Mach-Zehnder modulator (DP-MZM) operate at minimum transmission point, leaving the main MZM (MZ-c) at quadrature transmission point. Triangular waveform can be observed by a parameter setting of modulation index. The proposal is first analyzed and then validated by simulation. The key significance of the scheme is that it is capable of generating triangular waveform signals via a sinusoid local oscillator.  相似文献   

8.
We present a method for improving the dispersion tolerance of an optical duobinary transmitter based on a dual-arm Mach-Zehnder (MZ) modulator and an optical delay interferometer without electrical low-pass filters. Since such a duobinary modulator using a standard 1-bit delay cannot provide high dispersion tolerance, we investigated the impact of the modulator driving voltages and the bit delay in the interferometer to improve the transmitter’s dispersion tolerance.  相似文献   

9.
10.
光纤Mach-Zehnder空间干涉系统的实验研究   总被引:1,自引:1,他引:1  
深入细致地分析和研究光纤Mach-Zehnder空间干涉系统,详细介绍了各组成部分及功能,并对空间干涉场进行了理论分析,得到了线偏振光输出下的干涉场理论表达式和干涉场图。  相似文献   

11.
This Letter reports on picosecond pulse generation at a repetition of 10 GHz by using a single-stage electro-optic LiNbO(3) Mach-Zehnder modulator, stressing the simplicity of its setup. It is analytically and experimentally proved that dual-arm modulation with in-phase sinusoidal signals having slightly different amplitudes generated a highly coherent optical comb with a great spectral flatness and a parabolic phase relationship in its spectrum. The generated comb was Fourier synthesized and shaped into an ultrashort pulse train with an optical bandpass filter and a dispersive fiber. The pulse source was highly stable, exhibiting an ultralow timing jitter of less than 130 fs.  相似文献   

12.
Dong Y  He H  Hu W  Li Z  Wang Q  Kuang W  Cheng TH  Wen YJ  Wang Y  Lu C 《Optics letters》2007,32(7):745-747
We realize a novel photonic microwave phase shifter/modulator based on a nonlinear optical loop mirror incorporating a Mach-Zehnder interferometer. A near-linear phase shifter exceeding 180 degrees and a phase modulation with 2.5 Gbit/s baseband signal are obtained for a 10 GHz microwave signal by this proposed device.  相似文献   

13.
李晶  宁提纲  裴丽  简伟  油海东  陈宏尧  张婵  李超 《物理学报》2013,62(22):224210-224210
理论分析并实验研究了一种基于双平行马赫曾德调制器(DP-MZM)具有动态光载波边带比(OCSR)调谐能力的光单边带(OSSB) 调制实现方案, 方案利用DP-MZM内部集成的三个独立的调制单元, 分别实现OSSB调制、光载波移相和光信号干涉, 最终, 仅需改变调制器的一个偏置点, 就实现了OCSR的动态调谐, 实验得到了小信号调制(调制系数m=0.2)下, OCSR的可调范围-20.8–23.5 dB. 并分析了OCSR与射频功率之间的对应关系, 通过本方案调谐至最佳的OCSR可提高模拟光链路接收灵敏度. 关键词: 光纤通信 微波光子 光载波边带比 光单边带调制  相似文献   

14.
Rajneesh Kaler  R.S. Kaler 《Optik》2011,122(15):1399-1405
In this paper a simple all-optical logic device, called Mach-Zhender Interferometer is composed by using a semiconductor optical amplifier (SOA) and an optical coupler. This device is used for generating the logical functions (AND, XOR) and a multiplexer and an Encoder are obtained using this device in Optical Tree Architecture. The simulation of Encoder and Multiplexer is done at a rate of 10 Gb/s and both are simulated for different input logical combinations. Simulations indicate that the device is suitable to operate at much higher bit rate and also for different logical entities.  相似文献   

15.
We propose a method for the measurement of periodic optical waveforms based on the use of an electrooptic phase modulator placed in an optical Fabry-Perot or ring resonator. Significant broadening of the modulation spectrum extends the recently developed method of periodic modulation for pulse characterization into femtosecond scales. We numerically demonstrate the characterization of a 300-fs optical pulse. We also present a technique based on the temporal fractional Talbot effect for restoration of the pulse phase profile. After fast linear processing, subpicosecond pulses will be observed on the screen of a real-time oscilloscope. This complete characterization of optical pulses is entirely linear and therefore highly sensitive and simple in implementation.  相似文献   

16.
We present a method for improving the dispersion tolerance of a dual-arm Mach-Zehnder modulator by independently optimizing the applied voltage on each arm and the time delay between them. We found a significant improvement in the dispersion tolerance. Using the negative chirp effect and the time delay, it was possible to extend the transmission distance of 10 Gbit/s optical nonreturn-to-zero signals without any additional electrical or optical components.  相似文献   

17.
Optical time division multiplexing is an emerging and promising alternative for future high-speed photonic networks because of its ability to accommodate higher bit rate and flexible bandwidth. SMZ have been found to be the most suitable switching element than all the available de-multiplexing switches because of compact size, thermal stability, and low-power operation. In this paper, we simulate four channel OTDM systems (all-channel multiplexer and de-multiplexer) with a Mach-Zehnder modulator and an SMZ de-multiplexer to investigate the impact of FEC on the OTDM system. It is observed that the presence of FEC in OTDM transmission can greatly improve the system performance.  相似文献   

18.
Wang J  Dai D 《Optics letters》2010,35(24):4229-4231
A Mach-Zehnder interferometer (MZI) coupled microring is demonstrated experimentally to obtain a high sensitivity as well as a large range for measuring change in refractive index. For the present MZI-coupled microring, there is a major resonance wavelength with a high extinction ratio (16-36 dB) in a very large wavelength span. Consequently, a very large quasi-free spectral range (>120 nm) is achieved, which helps to obtain a large measurement range. The MZI-coupled microring sensor is used for measuring the change of the ambient refractive index ranging from 1.0 to 1.538, and the sensitivity is as high as 111 nm/refractive index unit.  相似文献   

19.
This paper presents a scheme for the compression of optical pulse widths by using a feedback optical phase modulator. In the first part of the proposed circuit, the carrier and two fourth-order sidebands on either side of the carrier are amplified and phase shifted before getting combined by an optical power combiner to generate a picosecond optical pulse. The optical pulse generated by this part of the circuit has a calculated width of 3.5 ps. This optical pulse when passed through a feedback optical phase modulator produces a compressed optical pulse at the output. By making the drive frequency of the feedback optical phase modulator equal to 100 GHz, we found the output optical pulse to have a calculated width of 1.0 ps. PACS 42.65.Re; 42.79.Sz; 42.62.-b; 42.30.Lr; 42.55.Px; 42.60.Fc; 42.70.Mp  相似文献   

20.
The high operating frequency, small dimensions and complex nature of advanced integrated photonics structures lead to a need for full 3D simulations in order to obtain accurate propagation characteristics. However, 3D simulations are very computationally expensive, especially for design optimization. Therefore a matrix analysis has been employed to model the propagation characteristics and analyze structure variations without the need to perform a separate simulation for each design iteration. Designs investigated include two that are promising for silicon-based integrated dense wavelength division multiplexing applications: the resonant cavity modulator and the microring resonator. The ability to accurately model and quickly optimize these electro-optic devices will be important for future large-scale integrated optics systems.  相似文献   

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