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首页> 外文期刊>IEEE Journal of Quantum Electronics >50-GHz Passively Mode-Locked Surface-Emitting Semiconductor Laser With 100-mW Average Output Power
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50-GHz Passively Mode-Locked Surface-Emitting Semiconductor Laser With 100-mW Average Output Power

机译:具有100mW平均输出功率的50GHz被动锁模表面发射半导体激光器

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摘要

We have developed a passively mode-locked optically-pumped vertical-external-cavity surface-emitting semiconductor laser (VECSEL) which delivers up to 100 mW of average output power at a repetition rate of 50 GHz in nearly transform-limited 3.3-ps pulses at a wavelength around 960 nm. The high-repetition-rate passive mode locking was achieved with a low-saturation-fluence semiconductor saturable absorber mirror (SESAM) incorporating a single layer of quantum-dots. The output power within a nearly diffraction-limited beam was maximized using a gain structure with a low thermal impedance soldered to a diamond heat spreader. In addition, we system-atically optimized the laser resonator to accommodate for the strong thermal lens caused by the optical pumping. We measured the thermal lens dioptric power and present a numerical model which is in good agreement with the measurements and is useful for optimizing resonator designs. The experimental setup is very versatile and its design and construction are discussed in detail.
机译:我们已经开发出一种无源锁模光泵浦垂直外腔表面发射半导体激光器(VECSEL),该激光器在接近变换极限的3.3 ps脉冲中以50 GHz的重复频率提供高达100 mW的平均输出功率在960 nm附近的波长高重复率被动模式锁定是通过结合了单层量子点的低饱和通量半导体可饱和吸收镜(SESAM)实现的。使用具有低热阻的增益结构焊接到金刚石散热器上,可以使在几乎衍射极限的光束内的输出功率最大化。此外,我们系统地优化了激光谐振器,以适应由光泵浦引起的坚固热透镜。我们测量了热透镜的屈光度,并给出了一个与测量值非常吻合的数值模型,可用于优化谐振器设计。实验装置非常通用,将详细讨论其设计和构造。

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