Wavelength conversion based on degenerate-four-wave-mixing with continuous-wave pumping in silicon nanowire waveguide


Autoria(s): Jia LX; Geng MM; Zhang L; Yang L; Chen P; Wang T; Liu YL
Data(s)

2009

Resumo

We present a comprehensive numerical study on the all-optical wavelength conversion based on the degenerate four-wave-mixing with continuous-wave pumping in the silicon nanowire waveguide. It is well known that the conversion efficiency and the 3-dB bandwidth can be greatly affected by the phase-matching condition. Through proper design of the waveguide cross-section, its dispersion property can be adjusted to satisfy the phase-matching condition and therefore effective wavelength conversion can be achieved in a large wavelength range. Generally, the group velocity dispersion plays a dominant role in the wavelength conversion. However, the fourth-order dispersion takes an important effect on the wavelength conversion when the group velocity dispersion is near the zero-point. Furthermore, the conversion efficiency and the 3-dB bandwidth can also be affected by the interactive length and the initial pump power. Through the numerical simulation, the optimal values for the interactive length and the initial pump power, which are functions of the propagation loss, are obtained to realize the maximum conversion efficiency. (C) 2008 Elsevier B.V. All rights reserved.

National Natural Science Foundation of China 60877015 90604001National High Technology Research and Development Program of China 2007AA03Z420 This work is supported by the National Natural Science Foundation of China under Grant No. 60877015 and 90604001 and by the National High Technology Research and Development Program of China under Grant No. 2007AA03Z420.

Identificador

http://ir.semi.ac.cn/handle/172111/7287

http://www.irgrid.ac.cn/handle/1471x/63381

Idioma(s)

英语

Fonte

Jia LX ; Geng MM ; Zhang L ; Yang L ; Chen P ; Wang T ; Liu YL .Wavelength conversion based on degenerate-four-wave-mixing with continuous-wave pumping in silicon nanowire waveguide ,OPTICS COMMUNICATIONS,2009 ,282(8):1659-1663

Palavras-Chave #光电子学 #DISPERSIVE DIELECTRIC FIBERS #GROUP-VELOCITY DISPERSION #NONLINEAR OPTICAL PULSES #ANOMALOUS-DISPERSION #PHOTONIC WIRES #GENERATION #GAIN #AMPLIFICATION #TRANSMISSION #MODULATION
Tipo

期刊论文