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Generation of Q-switched and mode-locked pulses with Eu2O3 saturable absorber

机译:用EU2O3可饱和吸收器产生Q开关和模式锁定脉冲

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In this paper, Europium Oxide (Eu2O3) is used as a saturable absorber (SA) to produce Q-switched and mode-locked pulses in an erbium-doped fiber laser (EDFL) cavity. The Eu2O3 was synthesized using casting technique and the resulting Eu2O3 thin film was introduced between two optical fiber ferrule connectors to form a SA. Then the SA was positioned in the EDFL ring cavity. A stable Q-switched operation was achieved by controlling the loss and gain of the cavity. As the pumping power was increased from 84.0 mW to 125.0 mW, the repetition frequency increased from 60.1 kHz to 68.6 kHz and pulse width reduced from 4.5 mu s to 3.6 mu s respectively. The Q-switched EDFL was operating at the center wavelength of 1568 nm, had a 162 nJ maximum pulse energy and 10.24% slope efficiency. Adding a 100 m SMF in the ring cavity initiated a self-starting mode-locked EDFL and the pulses remained stable within a range of 104.6 to 145.8 mW pump power. At the threshold pump power of 104.6 mW, the mode-locked EDFL operated at a central wavelength of 1565 nm with a repetition rate of 1.8 MHz and a pulse width of 3.51 ps. The results show that Eu2O3 can be deployed as a SA for both Q-switching and mode locking generations.
机译:在本文中,氧化铕(EU2O3)用作可饱和吸收剂(SA),以在掺铒光纤激光器(EDFL)腔中产生Q开关和模式锁定的脉冲。使用铸造技术合成EU2O3,并在两个光纤套圈连接器之间引入得到的EU2O3薄膜以形成SA。然后SA位于EDFL环腔中。通过控制腔的损耗和增益来实现稳定的Q开关操作。随着泵送功率从84.0 mW增加到125.0 mW,重复频率从60.1kHz增加到68.6 kHz,脉冲宽度分别从4.5米S降低到3.6亩。 Q开关EDFL在1568nm的中心波长下运行,具有162 nJ的最大脉冲能量和10.24%的斜率效率。在环形腔中添加100 M个SMF启动了一个自动启动模式锁定的EDFL,脉冲在104.6至145.8 MW泵电线范围内保持稳定。在阈值泵功率为104.6 mW,模式锁定的EDFL在1565nm的中心波长下操作,重复率为1.8MHz,脉冲宽度为3.51 ps。结果表明,对于Q开关和模式锁定代,EU2O3可以作为SA部署为SA。

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