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Nonlinear performances of dual-pump amplifiers in silicon waveguides

Nonlinear performances of dual-pump amplifiers in silicon waveguides
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摘要 The performances of a dual-pump parametric and Raman amplification process and the wavelength conversion in silicon waveguides are investigated. By setting the Raman contribution fraction f to be 0.043 in our analytical model, the amplification gain of the probe signal can be obtained to be over 10 dB. The pump transfer noise (PTN), the quantum noise (QN), and the total noise figure (TNF) are discussed, and the TNF has a constant value of about 4 dB in the gain bandwidth. An idler signal generated during the parametric amplification (PA) process can be used to realize the wavelength conversion in wavelength division multiplexing (WDM) systems. In addition, the pump signal parameters, the generated free carrier lifetime and effective mode area (EMA) of the waveguide are analysed for the optimization of signal gain and noise characteristics. The performances of a dual-pump parametric and Raman amplification process and the wavelength conversion in silicon waveguides are investigated. By setting the Raman contribution fraction f to be 0.043 in our analytical model, the amplification gain of the probe signal can be obtained to be over 10 dB. The pump transfer noise (PTN), the quantum noise (QN), and the total noise figure (TNF) are discussed, and the TNF has a constant value of about 4 dB in the gain bandwidth. An idler signal generated during the parametric amplification (PA) process can be used to realize the wavelength conversion in wavelength division multiplexing (WDM) systems. In addition, the pump signal parameters, the generated free carrier lifetime and effective mode area (EMA) of the waveguide are analysed for the optimization of signal gain and noise characteristics.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第4期290-295,共6页 中国物理B(英文版)
基金 supported by the State Key Development Program for Basic Research of China (Grant No. 2010CB327605) the Discipline Co-construction Project of Beijing Municipal Commission of Education, China (Grant No. YB20081001301) the Fundamental Research Funds for Central Universities, China (Grant Nos. 2011RC008 and 2009RC0314)
关键词 silicon waveguide parametric amplification stimulated Raman scattering noise figure wavelength conversion silicon waveguide, parametric amplification, stimulated Raman scattering, noise figure, wavelength conversion
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  • 1Boggio J M C, Moro S, Myslivets E, Windmiller J R, Alic N and Radic S 2009 Proceedings of OFC, March 22-26, 2009, Los Angeles, USA, p. 1.
  • 2Johan N and Bozena J 1993 Opt. Lett. 18 2099.
  • 3Laurent P, Arnaud M, Eric L, Thibaut S and Herv M 2003 J. Ot. Soc. Am. B 20 1532.
  • 4Yuan J H, Sang X Z, Yu C X, Xin X J, Zhou G Y, Li S G and Hou L T 2010 J. Optoelectron. Adv. Mater.-Rapid Comrnun. 4 23.
  • 5Yuan J H, Sang X Z, Yu C X, Li S G, Zhou G Y and Hou L T 2010 IEEE J. Quantum Electron. 46 728.
  • 6qWang Y B, Xiong C L, Hou J, Lu Q S, Peng Y and Chen Z L 2011 Acta Phys. Sin. 60 014201 (in Chinese).
  • 7David A C, Christiano J S and Taylor J R 2002 J. Opt. Soc. Am. B 19 1901.
  • 8Graham T R 2004 Nature 427 595.
  • 9Liu A S, Rong H S, Richard J, Oded C, Dani H and Mario P 2006 J. Lighwave Technol. 24 1440.
  • 10Koos C, Jacome L, Poulton C, Leuthold J and b-eude W 2007 Opt. Express 15 5976.

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