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Mode-locked ytterbium fiber lasers using a large modulation depth carbon nanotube saturable absorber without an additional spectral filter

机译:使用大调制深度碳纳米管可饱和吸收体的锁模光纤激光器,无需额外的光谱滤波器

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摘要

We demonstrate an all-normal-dispersion ytterbium (Yb)-doped fiber laser mode-locked by a higher modulation depth carbon nanotube saturable absorber (CNT-SA) based on an evanescent field interaction scheme. The laser cavity consists of pure normal dispersion fibers without dispersion compensation and an additional spectral filter. It is exhibited that the higher modulation depth CNT-SA could contribute to stabilize the mode-locking operation within a limited range of pump power and generate the highly chirped pulses with a high-energy level in the cavity with large normal dispersion and strong nonlinearity. Stable mode-locked pulses with a maximal energy of 29 nJ with a 5.59 MHz repetition rate at the operating wavelength around 1085 nm have been obtained. The maximal time-bandwidth product is 262.4. The temporal and spectral characteristics of pulses versus pump power are demonstrated. The experimental results suggest that the CNT-SA provides a sufficient nonlinear loss to compensate high nonlinearity and catch up the gain at a different pump power and thus leads to the stable mode locking.
机译:我们展示了一种基于渐逝场相互作用方案的更高调制深度碳纳米管可饱和吸收剂(CNT-SA)锁模的全正态色散掺Y(Yb)掺杂光纤激光器。激光腔由无色散补偿的纯正色散光纤和附加的光谱滤光片组成。结果表明,较高的调制深度CNT-SA可以有助于在有限的泵浦功率范围内稳定锁模操作,并在腔中产生具有高能级的highly线性脉冲,具有大的法向色散和强非线性。已经获得了稳定的锁模脉冲,该脉冲在1085 nm左右的工作波长下具有5.59 MHz的重复频率,最大能量为29 nJ。最大时间带宽积为262.4。展示了脉冲的时间和频谱特性与泵浦功率的关系。实验结果表明,CNT-SA提供了足够的非线性损耗,以补偿高非线性并在不同的泵浦功率下追赶增益,从而实现稳定的锁模。

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