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Switchable 10, 20, and 30 GHz region photonics-based microwave generation using thulium-doped fluoride fiber laser

机译:使用硫化氟化物光纤激光器可切换的10,20和30GHz区域光子学基微波产生

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摘要

In this work, switchable 10, 20, and 30 GHz region photonics-based microwave generation in a fiber laser cavity is proposed and demonstrated. The microwave generation is based on the beating of a dual-wavelength thuliumdoped fluoride fiber laser. With the aid of a micro-air gap in an adapter, single, double, and triple Brillouin spacing can be generated in a single fiber laser cavity without re-routing the cavity. The wavelength spacing of the dual wavelengths that are induced by the single, double, and triple Brillouin spacing are 0.084, 0.166, and 0.254 nm, respectively, at a center wavelength of 1490 nm. In addition, a numerical calculation is performed using MATLAB to prove the generation of microwave signals at 11.34, 22.44, and 34.3 GHz. With the advantage of switchability among the 10, 20, and 30 GHz regions, the proposed photonics-based microwave generation is promising for the advancement of 5G technologies. (C) 2018 Optical Society of America.
机译:在该工作中,提出并证明了在光纤激光腔中的可切换的10,20和30GHz区域光子学的微波产生。 微波生成基于双波长硫化氟纤维激光器的跳动。 借助于适配器中的微空气间隙,单个光纤激光腔中的单个,双和三宝石间距可以在不重新布线的情况下产生。 由单个,双布里突间距引起的双波长的波长间距分别在1490nm的中心波长下分别为0.084,0.166和0.254nm。 另外,使用MATLAB执行数值计算,以证明11.34,22.44和34.3 GHz的微波信号的产生。 随着10,20和30 GHz区域之间的可切换性的优点,所提出的基于光子的微波生成是对5G技术的推进的前进。 (c)2018年光学学会。

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