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Super-High-Speed Lightwave Demodulation using the Nonlinearities of an Avalanche Photodiode  

Park, Young-Kyu (Department of Photonics, Faculty of Engineering, Silla University)
Publication Information
KIEE International Transactions on Electrophysics and Applications / v.2C, no.5, 2002 , pp. 273-278 More about this Journal
Abstract
Even though the modulating signal frequency of the light is too high to detect directly, the signal can be extracted by frequency conversion at the same time as the detection by means of the non-linearity of the APD. An analysis is presented for super-high-speed optical demodulation by an APD with electronic mixing. A normalized gain is defined to evaluate the performance of the frequency conversion demodulation. The nonlinear effect of the internal capacitance was included in the small signal circuit analysis. We showed theoretically and experimentally that the normalized gain is dependent on the down converted difference frequency component. In the experiment, the down converted different frequency outputs became larger than the directly detected original signal for the applied local signal of 20㏈m.
Keywords
photodiode; APD; optical mixing; lightwave deodulation; frequency conversion;
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  • Reference
1 Alping A, 'Waveguide pin photodetectors: theoretical analysis and design criteria', IEE Proc. 136, Pt. J. no. 3, pp. 177-182, June, 1989
2 D. A. Humphreys, and R. A. Lobbett, 'Investigation of an optoelectronic nonlinear effect in a GaInAs photodiode and its application in a coherent optical communication system', lEE Proc. 135, Pt. J. 1, Feb. 1988
3 A. L. Peter, A. Andrekson, S. T. Eng, and A. Yariv, 'Tunable super lattice p-i-n photodetectors : characteristics, theory, and applications,' IEEE J. Quantum Electron., vol. 24, pp. 787-801, 1988
4 B. L. Kasper and J. C. Campbell, 'Multibigabitper-second avalanche photodiode lightwave receivers,' IEEE J. Lightwave Technol. vol. LT-5, pp. 1351-1364, 1987
5 S. M. Sze, 'Physics of semiconductor devices', 2nd edition, John Wiley&Sons, 1981
6 W. K. Kulczyk and Q. V. Davis 'The avalanche photodiode as an electronic mixer in an optical receiver', IEEE Trans. Electron Devices, ED-19, 11, pp. 1181-1190, Nov. 1972
7 D. G. Parker, P. G. Say, and W. Sibbett, '110GHz high-efficiency photodiodes fabricated from indium tin oxide/GaAs,' Electron. Lett., vol. 23, no. 10, pp. 527-528, 1987
8 T. E. Darcie et al. 'Optical preamplifier for lightwave sub-carrier systems', Electron Lett. 25. 10, Feb. 1988
9 Q. V. Davis and W. K. Kulczk 'Optical and electronic mixing in an avalanche photodiode', Electron Lett., 6. 2. Jan. 1980
10 T. E. Drace 'Sub-carrier multiplexing for multipleaccess lightwave networks', IEEE J. Lightwave Technol. LT-5, 8, pp. 1103-1110, 1987
11 T. Kagawa, K. Mogi, H. lwamura, O. Mikami and M. Naganuma, 'High speed low noise GaAs/AIGaAs superlattice APD', OQE89-22, May 1989
12 H. F. Wolf, Handbook of fiber optics : theory and applications, Garland STPM Press, New York, 1979
13 A. J. Seeds and B. Lenoir, 'Avalanche diode harmonic optoelectronic mixer', IEE Proc. Pt. J. 6. pp. 353-357, Dec. 1986