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Suppression of amplitude modulation induced by polarization mode dispersion using a multi-degree-of-freedom fiber filter
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作者 Rao Li Youen Jiang +4 位作者 Zhi Qiao canhong huang Wei Fan Xuechun Li Zunqi Lin 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2018年第4期5-15,共11页
Polarization mode dispersion(PMD) in fibers for high-power lasers can induce significant frequency modulation to amplitude modulation(FM-to-AM) conversion. However, existing techniques are not sufficiently flexible to... Polarization mode dispersion(PMD) in fibers for high-power lasers can induce significant frequency modulation to amplitude modulation(FM-to-AM) conversion. However, existing techniques are not sufficiently flexible to achieve efficient compensation for such FM-to-AM conversion. By analyzing the nonuniform transmission spectrum caused by PMD, we found that the large-scale envelope of the transmission spectrum has more serious impacts on the amount of AM. In order to suppress the PMD-induced FM-to-AM conversion, we propose a novel tunable spectral filter with multiple degrees of freedom based on a half-wave plate, a nematic liquid crystal, and an axis-rotated polarizationmaintaining fiber. Peak wavelength, free spectral range(FSR), and modulation depth of the filter are decoupled and can be controlled independently, which is verified through both simulations and experiments. The filter is utilized to compensate for the PMD-induced FM-to-AM conversion in the front end of a high-power laser facility. The results indicate that, for a pulse with phase-modulation frequency of 22.82 GHz, the FM-to-AM conversion could be reduced from 18% to 3.2% within a short time and maintained below 6.5% for 3 h. The proposed filter is also promising for other applications that require flexible spectral control such as high-speed channel selection in optical communication networks. 展开更多
关键词 advanced LASER technology and APPLICATIONS design fiber LASER and APPLICATIONS HIGH-POWER LASER LASER FACILITY LASER FACILITY and engineering LASER systems modeling optimization
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