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高效率石墨烯 1.34μm 掺钕激光器的 Q 开关和锁模。

Efficient graphene Q switching and mode locking of 1.34 μm neodymium lasers.

机构信息

State Key Laboratory of Crystal Materials, Shandong University, 250100 Jinan, China.

出版信息

Opt Lett. 2012 Jul 1;37(13):2652-4. doi: 10.1364/OL.37.002652.

Abstract

We demonstrate that few-layered graphene sheets used as a saturable absorber can provide efficient Q-switching and mode-locking modulation in 1.34 μm Nd:GdVO(4) bulk lasers. The minimum Q-switched pulses were 450 ns for 260 mW average power, 43 kHz repetition rate, and 2.5 μJ pulse energy. For the mode-locked laser, an average power of 1.29 W was achieved with 11 ps pulse duration and 13 nJ pulse energy. To our knowledge, this average power is the highest yet obtained from a graphene mode-locked laser, and the corresponding optical-optical efficiency of 23% is the best result among 1.3 μm neodymium mode-locked lasers. The quality factor M(2) of the Q-switched beam was 1.4 and 1.6 in the horizontal and longitudinal planes, respectively, and the M(2) of the mode-locked beam reached 1.1 and 1.0. These results clearly indicate the advantages of few-layered graphene as a saturable absorber.

摘要

我们证明了,在 1.34μm Nd:GdVO(4)块状激光器中,少层石墨烯片作为可饱和吸收体可以提供有效的 Q 开关和锁模调制。对于 260mW 的平均功率、43kHz 的重复率和 2.5μJ 的脉冲能量,最小 Q 开关脉冲为 450ns。对于锁模激光器,实现了 1.29W 的平均功率,脉冲持续时间为 11ps,脉冲能量为 13nJ。据我们所知,这一平均功率是迄今为止从石墨烯锁模激光器获得的最高值,23%的光光效率是在 1.3μm 掺钕锁模激光器中获得的最佳结果。Q 开关光束的质量因子 M(2)在水平和纵向平面上分别为 1.4 和 1.6,锁模光束的 M(2)达到 1.1 和 1.0。这些结果清楚地表明了少层石墨烯作为可饱和吸收体的优势。

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