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Application of a self-organizing photorefractive filter to the expansion of the single-mode operation range of tunable extended-cavity semiconductor lasers

机译:将自组织光折滤波器的应用在可调谐延伸腔半导体激光器的单模操作范围的膨胀中的应用

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Commercial 1.55-μm extended-cavity semiconductor lasers provide single-mode operation that can be continuously tuned over a range larger than 100 nm without mode hopping. But, such performances require delicate factory adjustments and a high mechanical stability of the external cavity. Furthermore, at high emission power, the tuning range is limited to smaller values because of annoying multimode operations. Previously, we showed that the alignment constraints can be relaxed by use of an intracavity photorefractive filter. Here, we present new results obtained using a crystal with low absorption and high photorefractive gain. We demonstrate that, without inducing excessive additional loss, single-mode emission is preserved at output power higher than the maximum power obtained in the absence of crystal, in the full tuning range of the laser.
机译:商业1.55-μm延伸腔半导体激光器提供单模操作,可以在没有模式跳跃的情况下连续调谐到大于100nm的范围内。但是,这种表演需要精致的工厂调整和外腔的高机械稳定性。此外,在高发射功率下,由于讨厌的多模操作,调谐范围限于较小的值。以前,我们表明,通过使用腔内光折射过滤器可以放松对准约束。这里,我们呈现使用具有较低吸收和高光折叠增益的晶体获得的新结果。我们证明,在不诱导过度额外的损失的情况下,在激光的全调谐范围内,在高于在不存在晶体中获得的最大功率的输出功率以高于最大功率的单模发射。

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