透明光解复用器用高非线性光纤单泵浦参量放大器的增宽增益特性

S. Ono
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引用次数: 1

摘要

由于玻璃光纤中非线性效应的超快响应时间,利用玻璃光纤中的四波混频(FWM)的光纤参量放大器(FOPA)被认为是超快光信号处理器(如超快光信号解复用器、相位共轭器和宽带波长转换器)的潜在器件。然而,由于光纤结构和泵浦方案的复杂性,与其他商用光纤放大器如掺铒光纤放大器(EDFA)和拉曼放大器(RA)相比,FOPA一直不太现实。因此,为了实现FOPA的大而平坦的参数增益特性,我们提出了一种简单实用的单泵浦激光器和准级联高度非线性光纤(HNLFs)的FOPA设计方案。该设计方案采用单泵浦激光二极管和准级联的两个不同零色散波长的硅基HNLFs。研究结果表明,在泵浦波长附近的波长区域参数增益特性得到了明显改善,在包括电信c波段波长区域在内的50 nm带宽范围内成功实现了超过23 dB的参数增益。此外,还给出了采用所设计的单泵FOPA进行160 Gb/s ~ 10 Gb/s DEMUX实验的结果。
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Broadened gain characteristics of single-pumped parametric amplifier using highly-nonlinear fibers for transparent optical demultiplexer
Due to the ultrafast response time of the nonlinear effects in glass fibers, the fiber-optical parametric amplifier (FOPA) exploiting four-wave mixing (FWM) in glass fibers has been regarded as a potential device for the ultrafast optical signal processors such as an ultrafast optical signal demultiplexer, a phase conjugator, and a wide band wavelength converter. However, cause of the complexity of the fiber configuration and the pump scheme, FOPA has been less realistic optical amplifier compared to other commercial optical fiber amplifiers such as an erbium-doped fiber amplifier (EDFA) and a Raman amplifier (RA). Therefore, to achieve large and flattened parametric gain characteristics of FOPA, we propose a simple and practical design scheme for FOPA using single pump laser and quasi-cascaded highly non-linear fibers (HNLFs). With this design scheme, single pump laser diode and quasi-cascaded two silica-based HNLFs with different zero dispersion wavelengths were used. As results of this study, apparent improvement of the parametric gain characteristics was observed in the wavelength region near the pump wavelength and over 23 dB parametric gain was successfully achieved in the 50 nm bandwidth including the telecom C-band wavelength region. In addition, the results of 160 Gb/s - 10 Gb/s DEMUX experiments with designed single-pump FOPA are also shown.
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