Xu Shutao, Turnali Ahmet, Sander Michelle Y
Department of Electrical and Computer Engineering and BU Photonics Center, Boston University, Boston, MA, 02215, USA.
Division of Materials Science and Engineering, Boston University, Brookline, MA, 02446, USA.
Sci Rep. 2022 Apr 27;12(1):6841. doi: 10.1038/s41598-022-10818-4.
Laser cavities which can generate different types of ultrashort pulses are attractive for practical applications and the study of pulse dynamics. Here, we report the first experimental observation of both conventional solitons (CS) and dissipative solitons (DS) generated from a single all-fiber laser with net-anomalous dispersion. A birefringence-related intracavity Lyot filter with an adjustable extinction ratio enables the switching between the two types of ultrashort pulses. Depending on the polarization controller settings and the pump power, either chirp-free CS with a pulse energy of 406 pJ and a spectral bandwidth of 5.1 nm or up-chirped DS with a pulse energy of 5.1 nJ and an optical bandwidth of 9.6 nm can be generated. Similar polarization features are observed when the laser switches between different soliton operations as both CS and DS are group-velocity-locked vector solitons. Our work paves a novel way to generate dissipative solitons with a relatively high pulse energy (one order of magnitude larger than for CS) and a large chirp directly from an all-fiber net-anomalous-dispersion cavity through birefringent filter management.
能够产生不同类型超短脉冲的激光腔对于实际应用和脉冲动力学研究具有吸引力。在此,我们首次报道了从具有净反常色散的单全光纤激光器中产生常规孤子(CS)和耗散孤子(DS)的实验观测结果。具有可调消光比的与双折射相关的腔内利奥滤光片能够在两种类型的超短脉冲之间进行切换。根据偏振控制器设置和泵浦功率,既可以产生脉冲能量为406 pJ、光谱带宽为5.1 nm的无啁啾CS,也可以产生脉冲能量为5.1 nJ、光学带宽为9.6 nm的正啁啾DS。当激光器在不同孤子操作之间切换时,会观察到类似的偏振特性,因为CS和DS都是群速度锁定矢量孤子。我们的工作为通过双折射滤光片管理直接从全光纤净反常色散腔中产生具有相对较高脉冲能量(比CS大一个数量级)和大啁啾的耗散孤子开辟了一条新途径。