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3篇 您的检索式:作者名="S.A.BABIN"
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1High-brightness all-fiber Raman lasers directly pumped by multimode laser diodes显示文摘High-brightness fiber laser sources usually utilize active rare-earth-doped fibers cladding-pumped by multimode laser diodes(LDs), but they operate in limited wavelength ranges. Singlemode-passive-fiber based Raman lasers are able to operate at almost any wavelength being pumped by high-power fiber lasers. One of the interesting possibilities is to directly pump graded-index(GRIN) multimode passive fibers by available high-power multimode LDs at 915–940 nm,thus achieving high-power Raman lasing in the wavelength range of 950–1000 nm, which is problematic for rare-earthdoped fiber lasers. Here we review the latest results on the development of all-fiber high-brightness LD-pumped sources based on GRIN fiber with in-fiber Bragg gratings(FBGs). The mode-selection properties of FBGs inscribed by fs pulses supported by the Raman clean-up effect result in efficient conversion of multimode pump into a high-quality output beam at 9 xx nm. GRIN fibers with core diameters 62.5, 85 and 100 μm are compared. Further scaling capabilities and potential applications of such sources are discussed.S.A.Babin 2019High Power Laser Science and Engineering2019,7,1:3
2二级级联拉曼光纤激光器的特性显示文摘对二级级联拉曼光纤激光器(RFL)的输出光谱特性进行了研究,利用理论模型讨论了高反腔输出光谱的分裂、对称以及随光栅中心波长改变而形成不对称的现象。实验得到了各级光功率的相互关系:随着抽运功率的增大,产生第一级斯托克斯(Stokes)波,剩余抽运功率有一个衰减的阶段;抽运功率继续增大,第二级斯托克斯波产生后,第一级斯托克斯波功率达到饱和,剩余抽运功率又开始线性增长。利用功率沿光纤长度分布的模型,分析了二级级联拉曼光纤激光器的功率特性,理论模型与实验结果相吻合。S.A.Babin D.V.Churkin S.I.Kablukov E.V.Podivilov 赵崇光 王蓟 2007中国激光2007,34,2:2
3Multiphoton ionization of standard optical fibers显示文摘Atoms ionization by the simultaneous absorption of multiple photons has found applications in fiber optics,where it leads to unique nonlinear phenomena.To date,studies of the ionization regime have been limited to gas-filled hollow-core fibers.Here,we investigate multiphoton ionization of standard optical fibers,where intense laser pulses ionize the atoms constituting the fiber structure itself,instead of that of the filling gas.We characterize material modifications produced by optical breakdown.Their formation affects laser beam dynamics over hours long temporal scales.The damage features are studied by means of optical microscopy and X-ray microtomography.In the framework of glass photonics,our results pave the way for a novel glass waveguide micromachining technique.M.FERRARO F.MANGINI Y.SUN M.ZITELLI A.NIANG M.C.CROCCO V.FORMOSO R.G.AGOSTINO R.BARBERI A.D.E LUCA A.TONELLO V.COUDERC S.A.BABIN S.WABNITZ 2022Photonics Research2022,10,6:0
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