Study of the operation optical power in modified uni-traveling carrier photodetector for low amplitude to phase conversion

被引:0
作者
Dan Yang
Yongqing Huang
Tao Liu
Jie Wu
Xiaokai Ma
Kai Liu
Xiaofeng Duan
Xiaomin Ren
机构
[1] Beijing University of Posts and Telecommunications,Institute of Information Photonics and Optical Communications
来源
Optical and Quantum Electronics | 2019年 / 51卷
关键词
Photodetectors; Optical communications; Amplitude to phase conversion; Simulation;
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学科分类号
摘要
The phase noise known as the amplitude to phase conversion (AM–PM) in modified uni-traveling carrier photodetector (MUTC-PD) is severely power-dependent. To achieve low AM–PM operation, applying proper injection optical power will be of crucial importance. For this purpose, the characterization of the phase change between the 60-GHz sinusoidal input and RF output of a MUTC-PD is analyzed under different incident optical power. Moreover, the equation of the phase change is deduced by applying an equivalent circuit model. The results demonstrate that the power-dependent nonlinear transit time plays a key role in the phase change. Besides, the absolute phase change is observed smallest when the differential capacitance equals to zero in a typical optical power. To the best of our knowledge, this is the first demonstration of the relationship between the differential capacitance and the phase change. When the differential capacitance equals to zero, the total capacitance of the MUTC exhibits a valley which could be a measurable feature of the optimum optical power for low phase noise operation.
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  • [1] Achouche M(2004)High performance evanescent edge coupled waveguide uni-traveling-carrier photodiodes for > 40-Gb/s optical receivers IEEE Photonics Technol. Lett. 16 584-586
  • [2] Magnin V(1990)Time-resolved, hot-electron conductivity measurement using an electro-optic sampling technique Appl. Phys. A 51 357-360
  • [3] Harari J(2008)Measurement and modeling of a high-linearity modified uni-traveling carrier photodiode IEEE Photonics Technol. Lett. 20 1219-1221
  • [4] Lelarge F(2013)Photonic microwave generation with high-power photodiodes Opt. Lett. 38 1712-1714
  • [5] Balynasl V(2000)Nonlinear saturation behaviors of high-speed p-i-n photodetectors J. Lightwave Technol. 18 203-212
  • [6] Krotkus A(2000)InP/InGaAs uni-traveling-carrier photodiodes IEICE Trans. Electron. E83-C 938-949
  • [7] Stalnionis A(2004)High-speed and high-output InP–InGaAs uni-traveling-carrier photodiodes IEEE J. Sel. Top. Quantum Electron. 10 709-727
  • [8] Gorelionok AT(2015)Circuit model of uni-traveling carrier photodiode with high power and enhanced bandwidth technique Opt. Quantum. Electron. 47 1397-1405
  • [9] Beling A(2013)Suppression of amplitude-to-phase noise conversion in balanced optical-microwave phase detectors Opt. Express 21 27057-27062
  • [10] Pan H(2010)High-saturation-current modified uni-traveling-carrier photodiode with cliff layer IEEE J. Quantum Electron. 46 626-632