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首页> 外文期刊>Applied optics >Wavelength-tunable bidirectional passively Q-switched Er-doped fiber laser incorporating a single-walled carbon nanotube and tunable bandpass filter
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Wavelength-tunable bidirectional passively Q-switched Er-doped fiber laser incorporating a single-walled carbon nanotube and tunable bandpass filter

机译:波长可调双向被动Q开关的ER掺杂光纤激光器,包括单壁碳纳米管和可调带通滤波器

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We demonstrated a continuously wavelength-tunable bidirectional passively Q-switched fiber laser based on a single-walled carbon nanotube saturable absorber and a bandpass filter (BPF). By tuning the commercial BPF, the Q-switched pulse can be obtained in the same cavity at the same pump power in clockwise (CW) and counter-clockwise (CCW) directions. The central wavelength can be continuously tuned from 1520.88 to 1568.56 nm in the CW direction, and from 1520.96 to 1568.64 nm in the CCW direction. A wide tuning range of 48 nm is achieved for two directions in the passively Q-switched fiber laser. During the tuning process of the fiber laser, the output pulses with the same central lasing wavelength can be obtained in both oscillation directions owing to the BPF. By increasing the pump power from 130 to 350 mW, the cavity delivers a Q-switched pulse with the central wavelength of 1560 nm whose repetition rate changes from 9.64 to 59.18 kHz for the CW direction. In the CCW direction, the repetition rate of the Q-switched pulse changes from 10.26 to 61.03 kHz. To the best of our knowledge, it is the first time that continuous wavelength-tunable passively Q-switched pulses have been achieved in a bidirectional erbium-doped fiber laser. (C) 2020 Optical Society of America
机译:我们基于单壁碳纳米管可饱和吸收器和带通滤波器(BPF)的连续波长可调谐双向被动Q开关光纤激光器。通过调谐商业BPF,可以在顺时针(CW)和逆时针(CCW)方向上在相同的泵功率处获得Q开关脉冲。中央波长可以在CW方向上连续调谐1520.88至1568.56nm,在CCW方向上的1520.96至1568.64nm。在被动Q开关光纤激光器中的两个方向实现了48nm的宽调谐范围。在光纤激光器的调谐过程中,由于BPF,可以在两个振荡方向上获得具有相同中心激光波长的输出脉冲。通过将泵功率从130增加到350 mW,腔体提供Q开关脉冲,其中中心波长为1560nm,其重复率从9.64到59.18kHz变为CW方向。在CCW方向上,Q开关脉冲的重复率从10.26变为61.03 kHz。尽我们所知,首次在双向铒掺杂光纤激光器中实现连续波长可被动Q切换脉冲。 (c)2020美国光学学会

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    《Applied optics》 |2020年第9期|共6页
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