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Random fiber laser based on an artificially controlled backscattering Erbium-Doped fiber

机译:基于人工控制的反向散射纤维的随机光纤激光

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We report on a novel artificially controlled backscattering Erbium-Doped random fiber laser (ACB-EDRFL) based on an artificially controlled backscattering Erbium-Doped fiber (ACB-EDF). The ACB-EDF is fabricated by using a femtosecond laser micromachining system, where a number of reflectors are fabricated in the EDF to enhance the distributed feedback. The proposed ACB-EDF helps to shorten the length of feedback fiber and reduce structural complexity of the random fiber laser. A fiber Bragg grating (FBG) and a segment of ACB-EDF constitute the half-open cavity structure. The laser gain and random distributed feedback are provided by the EDF and the ACB-EDF respectively. The maximal output power and the efficiency of the ACB-EDRFL are about 7.5 mW and 1.88%, respectively. The random lasing at the wavelength of 1530 nm with the extinction ratio of 55 dB is achieved at the output of the ACB-EDRFL.
机译:我们基于人工控制的反向散射纤维(ACB-EDF)报告了一种新颖的人工控制的反散射erbium掺杂的随机光纤激光器(ACB-EDRFL)。通过使用飞秒激光微加工系统制造ACB-EDF,其中在EDF中制造了许多反射器以增强分布式反馈。所提出的ACB-EDF有助于缩短反馈光纤的长度,并降低随机光纤激光的结构复杂性。纤维布拉格光栅(FBG)和ACB-EDF的区段构成了半开腔结构。激光增益和随机分布式反馈分别由EDF和ACB-EDF提供。 ACB-EDRFL的最大输出功率和效率分别为约7.5mW和1.88%。在ACB-EDRFL的输出处实现具有55dB的消光比的1530nm波长的随机激光。

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