首页> 外文会议>SPIE Conference on Quantum and Nonlinear Optics >Optical frequency comb generation with widely and precisely frequency space
【24h】

Optical frequency comb generation with widely and precisely frequency space

机译:光学频率梳成广泛和精确的频率空间

获取原文

摘要

The optical frequency combs (OFCs) with widely and precisely tunable frequency spacing have several unique applications such as generation of microwave to terahertz signals, high-precision phase-coherent wavelength conversion, coherent wireless and wavelength division-multiplexed (WDM) communications. In recent years, a number of approaches have been proposed for OFCs generation (OFCG). Mode-locked lasers and microresonator can generate OFCs with large bandwidth and high stability but suffer from poor tunability because of their fixed resonator. An OFCG based on an optoelectronic oscillator (OEO) can generate OFCs with good tunability but has a complex configuration. Another typical type of OFCG is based on modulators. It is a potential and economic method due to its advantages of simplicity, stability and tunability. In this paper, a novel approach to generating optical frequency combs with widely and precisely tunable frequency spacing based on a double quadrature phase shift key (DQPSK) modulator and highly nonlinear optical fibers (HNLFs) is proposed and experimentally demonstrated. A DFB-LD seed laser at 1550nm is modulated by the DQPSK modulator which is driven by RF signals. 5-line OFCs are generated as the seed OFCs at the output of DQPSK modulator and then sent into a segment of HNLFs. In this scheme, the frequency spacing of OFCs is directly decided by the RF signals' frequency, which can be widely and precisely tuned. Four-wave mixing (FWM) effect in HNLFs can effectively increase the number of comb lines and expand bandwidth of the seed OFCs without influence on frequency spacing. The configuration is relatively simple and adjustable. The frequency spacing can be precisely tuned from 10 MHz to 20 GHz in our experiments. The typical 25-line OFCs are experimentally generated with 432 GHz bandwidth at 16 GHz frequency spacing.
机译:具有广泛和精确的可调谐频率间距的光学频率梳理(OFC)具有几种独特的应用,例如微波的产生到太赫兹信号,高精度相位相干波长转换,相干无线和波分复用(WDM)通信。近年来,已为OFCS生成(OFCG)提出了许多方法。模式锁定的激光器和微谐振器可以产生具有大带宽和高稳定性的OFC,而是由于其固定谐振器而受到可调性差。基于光电振荡器(OEO)的OFCG可以产生具有良好可调性的OFC,但具有复杂的配置。另一种典型的OFCG是基于调制器。由于其简单,稳定性和可调性的优点,这是一种潜在和经济的方法。在本文中,提出了一种基于双正交相移键(DQPSK)调制器和高度非线光纤(HNLF)的广泛和精确的可调谐频率间距产生光学频率梳理的新方法。和实验证明了基于双正交相移键(DQPSK)调制器和高度非线性光纤)。 DQPSK调制器的DQPSK调制器调制为1550nm的DFB-LD种子激光器由RF信号驱动。生成5行,作为DQPSK调制器输出的种子为OFC,然后发送到HNLF的一段。在该方案中,OFC的频率间距通过RF信号的频率直接决定,这可以广泛地精确调整。 HNLF中的四波混合(FWM)效应可以有效地增加梳状线的数量,并在不影响频率间距的情况下扩大种子的膨胀带宽。配置相对简单且可调。在我们的实验中,频率间距可以精确调谐到10 MHz至20 GHz。在16 GHz频率间距的432GHz带宽进行实验生成典型的25线。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号