A multiwavelength source having precise channel spacing based on external modulation and fiber Kerr nonlinearity

J. Veselka, S. Korotky
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引用次数: 2

Abstract

WDM is an attractive option for providing increased capacity in lightwave transmission systems and routing capability within optical networks. As the demand for the number of wavelengths in transport and local systems will continue to increase, new technological capabilities and designs for transmitters will be required to minimize the complexity and cost of the use of such large numbers of closely spaced wavelengths. Several approaches are being considered to address the wavelength stabilization and inventory issues. A very attractive solution to these problems is to use a wavelength-selectable laser. Wavelength-selectable source chips that can reach 4-6 channels have been reported, however reaching large numbers would heighten integration issues, such as yield and packaging. Recently, alternative approaches to multiwavelength sources (MWS) that can generate many or all of the system wavelengths have been reported. One of these sources consists of a mode-locked laser of the precise length to produce pulses at a repetition rate of 50 GHz and, hence, discrete cw frequency components with a separation of 50 GHz. Here we propose and demonstrate an MWS of cw wavelength channels that is based on a cw laser, external modulator, and the Kerr nonlinearity in an optical fiber.
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基于外部调制和光纤克尔非线性的具有精确信道间距的多波长源
波分复用是一种有吸引力的选择,可以提供光波传输系统中增加的容量和光网络中的路由能力。由于运输和当地系统对波长数量的需求将继续增加,将需要新的技术能力和发射机设计,以尽量减少使用如此大量紧密间隔的波长的复杂性和成本。目前正在考虑几种方法来解决波长稳定和库存问题。对于这些问题,一个非常有吸引力的解决方案是使用波长可选激光器。据报道,波长可选择的源芯片可以达到4-6个通道,但如果达到大量,将会加剧集成问题,如产量和封装。最近,多波长源(MWS)的替代方法可以产生许多或所有的系统波长已被报道。其中一个源由精确长度的锁模激光器组成,该激光器产生的脉冲重复频率为50 GHz,因此具有50 GHz间隔的离散连续波频率分量。在这里,我们提出并演示了基于连续波激光器、外部调制器和光纤中的克尔非线性的连续波波长通道的MWS。
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