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利用晶体回音壁模式谐振器产生的最优相干克尔频率梳用于超高容量光纤通信。

Optimally coherent Kerr combs generated with crystalline whispering gallery mode resonators for ultrahigh capacity fiber communications.

作者信息

Pfeifle Joerg, Coillet Aurélien, Henriet Rémi, Saleh Khaldoun, Schindler Philipp, Weimann Claudius, Freude Wolfgang, Balakireva Irina V, Larger Laurent, Koos Christian, Chembo Yanne K

机构信息

Institute of Photonics and Quantum Electronics (IPQ), Karlsruhe Institute of Technology (KIT), 76131 Karlsruhe, Germany.

Institute of Microstructure Technology (IMT), Karlsruhe Institute of Technology (KIT), 76131 Karlsruhe, Germany.

出版信息

Phys Rev Lett. 2015 Mar 6;114(9):093902. doi: 10.1103/PhysRevLett.114.093902. Epub 2015 Mar 2.

Abstract

Optical Kerr frequency combs are known to be effective coherent multiwavelength sources for ultrahigh capacity fiber communications. These combs are the frequency-domain counterparts of a wide variety of spatiotemporal dissipative structures, such as cavity solitons, chaos, or Turing patterns (rolls). In this Letter, we demonstrate that Turing patterns, which correspond to the so-called primary combs in the spectral domain, are optimally coherent in the sense that for the same pump power they provide the most robust carriers for coherent data transmission in fiber communications using advanced modulation formats. Our model is based on a stochastic Lugiato-Lefever equation which accounts for laser pump frequency jitter and amplified spontaneous emission noise induced by the erbium-doped fiber amplifier. Using crystalline whispering-gallery-mode resonators with quality factor Q∼10^{9} for the comb generation, we show that when the noise is accounted for, the coherence of a primary comb is significantly higher than the coherence of their solitonic or chaotic counterparts for the same pump power. In order to confirm this theoretical finding, we perform an optical fiber transmission experiment using advanced modulation formats, and we show that the coherence of the primary comb is high enough to enable data transmission of up to 144  Gbit/s per comb line, the highest value achieved with a Kerr comb so far. This performance evidences that compact crystalline photonic systems have the potential to play a key role in a new generation of coherent fiber communication networks, alongside fully integrated systems.

摘要

光学克尔频率梳是用于超高容量光纤通信的有效相干多波长光源。这些频率梳是各种时空耗散结构在频域的对应物,如腔孤子、混沌或图灵斑图(条纹)。在本信函中,我们证明了在光谱域中对应于所谓主频率梳的图灵斑图具有最佳相干性,即在相同泵浦功率下,它们为使用先进调制格式的光纤通信中的相干数据传输提供了最稳健的载波。我们的模型基于一个随机的卢吉亚托 - 莱弗尔方程,该方程考虑了激光泵浦频率抖动以及掺铒光纤放大器引起的放大自发辐射噪声。使用品质因数Q∼10⁹的晶体回音壁模式谐振器来产生频率梳,我们表明当考虑噪声时,对于相同泵浦功率,主频率梳的相干性显著高于其孤子或混沌对应物的相干性。为了证实这一理论发现,我们使用先进调制格式进行了光纤传输实验,并且我们表明主频率梳的相干性足够高,能够实现每条梳状线高达144 Gbit/s的数据传输,这是迄今为止克尔频率梳所达到的最高值。这一性能证明了紧凑型晶体光子系统与完全集成系统一样,有潜力在新一代相干光纤通信网络中发挥关键作用。

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