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Temperature-controlled mode selection of Er-doped random fiber laser with disordered Bragg gratings 被引量:5
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作者 W.L.Zhang Y.B.Song +3 位作者 X.P.Zeng R.Ma Z.J.Yang y.j.rao 《Photonics Research》 SCIE EI 2016年第3期102-105,共4页
In this paper, we proposed a way to realize an Er-doped random fiber laser(RFL) with a disordered fiber Bragg grating(FBG) array, as well as to control the lasing mode of the RFL by heating specific locations of the d... In this paper, we proposed a way to realize an Er-doped random fiber laser(RFL) with a disordered fiber Bragg grating(FBG) array, as well as to control the lasing mode of the RFL by heating specific locations of the disordered FBG array. The disordered FBG array performs as both the gain medium and random distributed reflectors, which together with a tunable point reflector form the RFL. Coherent multi-mode random lasing is obtained with a threshold of between 7.5 and 10 mW and a power efficiency between 23% and 27% when the reflectivity of the point reflector changes from 4% to 50%. To control the lasing mode of random emission, a specific point of the disordered FBG array is heated so as to shift the wavelength of the FBG(s) at this point away from the other FBGs.Thus, different resonance cavities are formed, and the lasing mode can be controlled by changing the location of the heating point. 展开更多
关键词 MODE Temperature-controlled mode selection of Er-doped random fiber laser with disordered Bragg gratings
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Generation of cascaded four-wave-mixing with graphene-coated microfiber 被引量:1
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作者 Y.Wu B.C.Yao +8 位作者 Q.Y.Feng X.L.Cao X.Y.Zhou y.j.rao Y.Gong W.L.Zhang Z.G.Wang Y.F.Chen K.S.Chiang 《Photonics Research》 SCIE EI 2015年第2期64-68,共5页
A graphene-coated microfiber(GCM)-based hybrid waveguide structure formed by wrapping monolayer graphene around a microfiber with length of several millimeters is pumped by a nanosecond laser at ~1550 nm, and multiord... A graphene-coated microfiber(GCM)-based hybrid waveguide structure formed by wrapping monolayer graphene around a microfiber with length of several millimeters is pumped by a nanosecond laser at ~1550 nm, and multiorder cascaded four-wave-mixing(FWM) is effectively generated. By optimizing both the detuning and the pump power, such a GCM device with high nonlinearity and compact size would have potential for a wide range of FWM applications, such as phase-sensitive amplification, multi-wavelength filter, all-optical regeneration and frequency conversion, and so on. 展开更多
关键词 GCM FWM Generation of cascaded four-wave-mixing with graphene-coated microfiber wave
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