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Generation of second harmonic light with a wavelength of 560 nm in a compact module

机译:在紧凑型模块中产生波长为560 nm的二次谐波光

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摘要

We demonstrate a continuous wave 133 mW laser module at 560.5 nm on a 50 mm . 10 mm optical bench. The setup consists of a 1121 nm distributed Bragg reflector ridge waveguide laser and a MgO:LiNbO3 quasi-phase matched ridge waveguide crystal, which are coupled by a grin lens, as well as two cylindrical lenses for beam collimation behind the crystal. A novel approach to ensure phase matching is used. The laser and the crystal are stabilized by the same heat sink and only the wavelength of the laser is tuned by heating the distributed Bragg reflector section of the laser. This reduces the influence of temperature variations on the module's performance enabling operation with output power variations <10% over a temperature range of 20 K. The size and robustness against temperature variations of this setup make it an interesting candidate for future biomedical applications. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们演示了在50mm上560.5 nm处的连续波133 mW激光模块。 10毫米光学平台。该装置由1121 nm分布的布拉格反射器脊形波导激光器和MgO:LiNbO3准相匹配的脊形波导晶体组成,它们通过一个咧嘴透镜耦合,以及两个用于在晶体后面进行光束准直的圆柱透镜。使用了一种确保相位匹配的新颖方法。激光器和晶体由相同的散热器稳定,并且通过加热激光器的分布式布拉格反射器部分来仅调谐激光器的波长。这样可以减小温度变化对模块性能的影响,从而能够在20 K的温度范围内以输出功率变化<10%进行操作。这种设置的尺寸和坚固性可抵抗未来温度变化的生物医学应用。 (C)2016 Elsevier Ltd.保留所有权利。

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