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Wafer-Fused Optically Pumped VECSELs Emitting in the 1310-nm and 1550-nm Wavebands

机译:在1310 nm和1550 nm波段发射的晶圆融合光泵浦VECSEL

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1300-nm, 1550-nm, and 1480-nm wavelength, optically pumped VECSELs based on wafer-fusedInAlGaAs/InP-AlGaAs/GaAs gain mirrors with intracavity diamond heat spreaders are described. Thesedevices demonstrate very low thermal impedance of 4 K/W. Maximum CW output of devices with 5 groupsof quantum wells shows CW output power of 2.7 W from 180 μm apertures in both the 1300-nm and the1550-nm bands. Devices with 3 groups of quantum wells emitting at 1480 nm and with the same aperturesize show CW output of 4.8 W. These VECSELs emit a high-quality beam withM2beam parameterbelow 1.6 allowing reaching a coupling efficiency as high as 70% into a single-mode fiber. Maximum valueof output power of 6.6 W was reached for 1300 nm wavelength devices with 290 μm aperture size. Basedon these VECSELs, second harmonic emission at 650 nm wavelength with a record output of 3 W andRaman fiber lasers with 0.5 W emission at 1600 nm have been demonstrated.
机译:描述了基于1300纳米,1550纳米和1480纳米波长的光泵VECSEL,它们基于带有腔内金刚石散热器的晶圆融合InAlGaAs / InP-AlGaAs / GaAs增益镜。这些设备显示出非常低的4 K / W热阻。具有5组量子阱的器件的最大CW输出表明,在1300 nm和1550 nm波段中,从180μm孔径的CW输出功率为2.7μW。具有在1480 nm处发射的三组量子阱且具有相同孔径的设备的CW输出为4.8 W.这些VECSEL发射高质量光束,M2光束参数低于1.6,从而使单模光纤的耦合效率高达70% 。孔径为290μm的1300nm波长器件的输出功率最大值为6.6μW。基于这些VECSEL,已经证明了在记录波长为3 wavelengthW的情况下,在650 nm波长下的二次谐波发射和在1600 nm下具有0.5 W发射的拉曼光纤激光器。

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