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基于取向衬底磷化镓实现 4.6-4.7μm 波段多毫瓦、可调谐、连续波中红外激光输出。

Multimilliwatt, tunable, continuous-wave, mid-infrared generation across 4.6-4.7  μm based on orientation-patterned gallium phosphide.

出版信息

Opt Lett. 2018 May 15;43(10):2284-2287. doi: 10.1364/OL.43.002284.

Abstract

We report the generation of tunable continuous-wave (cw) mid-infrared (mid-IR) radiation across 4608-4694 nm using the new nonlinear material, orientation-patterned gallium phosphide (OP-GaP). By exploiting difference-frequency mixing between a cw Tm-fiber laser and a home-built cw optical parametric oscillator in a 40-mm-long crystal, we have generated up to 43 mW of cw output power, with >30  mW across >95% of the mid-IR tuning range. The output at 4608 nm exhibits high beam quality with a passive power stability of 2.5% rms over 1.5 min. The temperature acceptance bandwidth of the OP-GaP crystal has been measured and compared with theory. The performance of the mid-IR source at high pump powers and polarization-dependent transmission in OP-GaP has been investigated.

摘要

我们使用新型非线性材料取向磷化镓 (OP-GaP) 产生了可调谐连续波 (cw) 中红外 (mid-IR) 辐射,波长范围为 4608-4694nm。通过在 40 毫米长的晶体中利用连续波 Tm 光纤激光器和自制连续波光参量振荡器之间的差频混合,我们产生了高达 43mW 的连续波输出功率,在 >95%的 mid-IR 调谐范围内超过 30mW。在 4608nm 处的输出具有高光束质量,在 1.5 分钟内的被动功率稳定性为 2.5% RMS。测量了 OP-GaP 晶体的温度接受带宽,并与理论进行了比较。研究了在高泵浦功率和 OP-GaP 中偏振相关传输条件下 mid-IR 源的性能。

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