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Experimental studies of optical Raman amplifiers for 1.3μm wavelength band and its application to 20Gbit/s×2WDM transmission

机译:1.3μm波长带光拉曼放大器的实验研究及其在20Gbit / s×2WDM传输中的应用

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摘要

Configurations of a Raman amplifier suitable for a 1.3-μm wavelength band are discussed and their properties are experimentally investigated. Pump light with a wavelength of 1.23 μm that is necessary for the Raman amplification in the 1.3-μm wavelength band is obtained using a 1.06-μm fiber laser and Raman laser technique. Concerning the Raman laser, wavelength conversion from 1.06 μm to 1.23 μm is effectively achieved using a cavity configuration including fiber Bragg gratings and a dispersion-shifted fiber. On the other hand, a conventional dispersion compensation fiber which has an essential property of high nonlinearity is applied in order to obtain large gain at 1.3 μm. Net gain of 35 dB and output power of 15 dBm are achieved. To confirm the applicability of the Raman amplifiers to high-speed optical transmissions, experiments of 20 Gbit/s × 2 WDM repeaterless transmission through a 80-km conventional single-mode fiber are carried out. The 1.3-μm signal should be degraded due to the dispersion caused by the dispersion compensation fiber in the Raman amplifier; However, bit error rate of less than 10 to 12 is obtained at both wavelengths, which is sufficient performance for practical uses.
机译:讨论了适用于1.3μm波段的拉曼放大器的配置,并通过实验研究了其性能。使用1.06μm光纤激光器和拉曼激光技术可获得1.3-μm波段的拉曼放大所必需的波长为1.23μm的泵浦光。关于拉曼激光器,使用包括光纤布拉格光栅和色散位移光纤的腔结构可以有效地实现从1.06μm到1.23μm的波长转换。另一方面,为了获得1.3μm的大增益,使用了具有高非线性的基本特性的常规色散补偿光纤。实现了35 dB的净增益和15 dBm的输出功率。为了确认拉曼放大器在高速光传输中的适用性,我们进行了通过80公里常规单模光纤进行20 Gbit / s×2 WDM无中继器传输的实验。由于拉曼放大器中的色散补偿光纤会导致色散,因此1.3μm信号应降低。然而,在两种波长下都获得小于10至12的误码率,这对于实际应用来说是足够的性能。

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