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Sub-Nanosecond Single Mode-Locking Pulse Generation in an Idler-Resonant Intracavity KTA Optical Parametric Oscillator Driven by a Dual-Loss-Modulated Q-Switched and Mode-Locked Laser with an Acousto-Optic Modulator and MoWS2

Nanomaterials(2024)

Shandong Univ

Cited 0|Views9
Abstract
The synthesis of 2D MoWS2 nanosheets involved the liquid-phase exfoliation technique was explored in this paper. The nonlinear optical response of MoWS2 was characterized in the 1 µm wavelength range, and its suitability as a saturable absorber (SA) was confirmed. Experimental demonstrations were conducted by using MoWS2 as an SA in an idler-resonant intracavity KTA optical parametric oscillator (OPO) driven by a dual-loss-modulated Q-switched and mode-locked (QML) YVO4/Nd:YVO4 laser with an acousto-optic modulator (AOM). By appropriately tuning the pump power and the AOM repetition rate, the Q-switched envelope pulse widths for the signal and idler waves could be significantly reduced to be shorter than the cavity round-trip transit time, i.e., the interval between two neighboring mode-locking pulses. Consequently, this enabled the generation of sub-nanosecond single mode-locking pulses with a low repetition rate, high pulse energy, and remarkable stability. With a repetition rate of 1 kHz and maximal pulse energies of 318 µJ and 169 µJ, respectively, sub-nanosecond single mode-locking pulses of the signal and idler waves were generated. The theoretical model was established using coupled rate equations with a Gaussian spatial distribution approximation. The numerical simulation results for generating sub-nanosecond single mode-locking pulses for the signal and idler waves within their respective Q-switched envelopes aligned fundamentally with the experimental results, proving that MoWS2 can be a potential nanomaterial for further optoelectronic applications.
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MoWS2 saturable absorber,optical parametric oscillator,rate equations,Q-switched and mode-locked,single mode-locking pulse
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要点】:本文通过在KTA光学参量振荡器中利用二维MoWS2纳米片作为饱和吸收体,实现了亚纳秒单模锁模脉冲的生成,具有低重复频率、高脉冲能量和稳定性。

方法】:采用液体相剥离技术合成了二维MoWS2纳米片,并研究了其在1 µm波长范围内的非线性光学特性,确认其作为饱和吸收体的适用性。

实验】:实验在由双损耗调制Q开关和模式锁定YVO4/Nd:YVO4激光驱动的腔内KTA光学参量振荡器中进行,使用MoWS2作为饱和吸收体,通过调节泵浦功率和声光调制器的重复频率,实现了信号和闲频波的Q开关包络脉冲宽度小于腔往返时间,从而生成了亚纳秒单模锁模脉冲。实验中使用了双损耗调制QML激光和声光调制器,数据集名称未提及,实验结果得到了理论模型的验证。