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Low‐noise and high‐power operation in high reflectivity coated nonabsorbing mirror GaAlAs lasers

机译:低连字符;噪声和高连字符;高功率操作在高反射率镀膜非吸收镜面GaAlAs激光器中

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摘要

We have successfully attained low‐noise and high‐power operation in GaAlAs lasers by applying high reflectivity facet coating approach to nonabsorbing mirror lasers. High reflectivity coating is used to reduce feedback induced noise coming from hopping between the diode cavity modes and between the external cavity modes. A nonabsorbing mirror structure is used to obtain high‐power operation by suppressing mirror degradation and catastrophic optical damage effectively even with the use of high reflectivity coating. Nonabsorbing mirror lasers with the front facet reflectivity 50 showed the relative intensity noise level less than −130 dB/Hz at 3 mW under 0–10 optical feedback and showed the cw output power as high as 50 mW in fundamental spatial mode operation. Under 30‐mW cw operation at 50 °C, on the other hand, obvious degradation has not been observed over 4000 h in the nonabsorbing mirror lasers with 50 front facet reflectivity. Thus the present laser is useful as a low‐noise source at a low‐power level and also as a high‐power source with high reliability.
机译:通过在非吸收镜面激光器上应用高反射率刻面镀膜方法,我们成功地实现了GaAlAs激光器的低连字符噪声和高连字符功率操作。高反射率涂层用于减少来自二极管腔模式之间和外部腔模式之间跳跃的反馈感应噪声。采用非吸收镜面结构,即使使用高反射率镀膜,也能有效抑制镜面退化和灾难性光学损伤,从而实现高功率操作。在0%的光反馈下,正面反射率为50%的非吸收镜面激光器在3 mW时的相对强度噪声水平小于−130 dB/Hz,在基本空间模式操作下显示连续波输出功率高达50 mW。另一方面,在50°C下30μW连续工作下,在具有50°C的非吸收镜面激光器中,在4000 h内未观察到明显的退化。因此,本激光器可用作低连字符功率水平的低连字符噪声源,也可用作具有高可靠性的高连字符功率源。

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