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Efficient continuous-wave radiatively cooled Cr↑(4+):forsterite lasers at room temperature

机译:室温下高效连续波辐射冷却Cr↑(4+):镁橄榄石激光器

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摘要

Results of a detailed experimental investigation aimed at reducing the thermal loading problem in a cw Cr↑(4+):forsterite laser at elevated temperatures are presented. From a Cr↑(4+):forsterite crystal with a differential absorption coefficient of 0.57 cm↑(-1), as much as 900 mW of cw output power has been obtained at 1.26 μm and at a crystal boundary temperature of 15 ℃ with an absorbed pump power of only 4.5W at 1.06 μm. No chopping of the pump beam was necessary. An efficient radiative cooling technique was further employed to cool the laser and no subsequent power fading was observed. To the author↑(4+)s knowledge, the measured absorbed power slope efficiency of 29.5% represents the highest cw power performance reported to date from a Cr↑(4+):forsterite laser pumped by a Nd:YAG laser around room temperature. The role of the low differential absorption coefficient in the reduction of thermal loading is further elucidated by presenting comparative cw power performance data with a second Cr↑(4+) :forsterite crystal having a differential absorption coefficient of 1.78 cm↑(-1) in the temperature range between 12.and 35 ℃. Finally, some interesting multipulse effects of the laser observed in the millisecond regime during quasi-cw operation at 50% duty cycle are described. #1998 Optical Society of America OCIS codes: 140.5680, 140.6810, 140.0140.
机译:提出了详细的实验研究结果,旨在减少在高温下Cw Cr↑(4+):镁橄榄石激光器中的热负荷问题。从差吸收系数为0.57 cm↑(-1)的Cr↑(4+):镁橄榄石晶体中,在1.26μm和15℃的晶界温度下,可获得900 mW的cw输出功率。 1.06μm时的吸收泵浦功率仅为4.5W。无需切断泵浦光束。进一步采用了有效的辐射冷却技术来冷却激光器,并且没有观察到随后的功率衰减。据作者↑(4+)了解,测得的吸收功率斜率效率为29.5%,是迄今为止在室温下由Nd:YAG激光器泵浦的Cr↑(4+):镁橄榄石激光器报告的最高连续功率性能。 。通过提供具有第二个Cr↑(4+):差吸收系数为1.78 cm↑(-1)的Cr↑(镁橄榄石)晶体的比较cw功率性能数据,进一步阐明了低差分吸收系数在降低热负荷中的作用。温度范围在12至35℃之间。最后,描述了在50%占空比的准cw操作期间在毫秒状态下观察到的一些有趣的激光多脉冲效应。 #1998美国光学学会OCIS代码:140.5680、140.6810、140.0140。

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