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High-power (1.1W) green (532nm) laser source based on single-passsecond harmonic generation on a compact micro-optical bench

机译:基于紧凑型微光学平台上单次谐波产生的高功率(1.1W)绿色(532nm)激光源

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摘要

We demonstrate a compact high-power green (532nm) laser module based on single-pass second harmonic generation. The pump source is a distributed Bragg reflector tapered diode laser. The frequency conversion is achieved with a 2.5 cm long periodically poled MgO:LiNbO-3 bulk crystal. The entire module is integrated on a compact micro-optical bench with a footprint of 2.5 cm~3. Up to 1.1 W output green light power is achieved at a pump power of 7.6 W with an optical conversion efficiency of about 15% and a corresponding module wall-plug efficiency of more than 4%. The green laser beam has a relatively good beam quality (measured at output power level of ~0.9 W) with M~2-σ=1.8 in the vertical direction and M~2-σ=4.9 in the lateral direction, respectively. The long-term output power stability is ±10% (tested at output power level of ~0.6 W).
机译:我们演示了基于单次二次谐波产生的紧凑型高功率绿色(532nm)激光模块。泵浦源是分布式布拉格反射器锥形二极管激光器。使用2.5厘米长的周期性极化MgO:LiNbO-3大块晶体可以实现频率转换。整个模块集成在占地2.5 cm〜3的紧凑型微光学平台上。在7.6 W的泵浦功率下,可实现高达1.1 W的输出绿光功率,其光转换效率约为15%,相应的模块壁挂效率超过4%。绿色激光束具有相对较好的光束质量(在〜0.9 W的输出功率水平下测量),垂直方向的M〜2-σ= 1.8,横向方向的M〜2-σ= 4.9。长期输出功率稳定性为±10%(在〜0.6 W的输出功率水平下测试)。

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