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Phosphorene quantum dot saturable absorbers for ultrafast fiber lasers

机译:超快纤维激光器的亚磷量子点可饱和吸收剂

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We fabricate ultrasmall phosphorene quantum dots (PQDs) with an average size of 2.6?±?0.9?nm using a liquid exfoliation method involving ultrasound probe sonication followed by bath sonication. By coupling the as-prepared PQDs with microfiber evanescent light field, the PQD-based saturable absorber (SA) device exhibits ultrafast nonlinear saturable absorption property, with an optical modulation depth of 8.1% at the telecommunication band. With the integration of the all-fiber PQD-based SA, a continuous-wave passively mode-locked erbium-doped (Er-doped) laser cavity delivers stable, self-starting pulses with a pulse duration of 0.88?ps and at the cavity repetition rate of 5.47?MHz. Our results contribute to the growing body of work studying the nonlinear optical properties of ultrasmall PQDs that present new opportunities of this two-dimensional (2D) nanomaterial for future ultrafast photonic technologies.
机译:使用涉及超声探头超声处理的液体剥离方法,使用平均尺寸为2.6Ω·η≤0.9Ω·nm的超大磷烯量子点(PQDS)。通过用微纤维渐逝光场耦合制备的PQD,基于PQD的可饱和吸收器(SA)装置具有超快非线性饱和吸收性能,在电信带上的光学调制深度为8.1%。随着全光纤PQD的SA的集成,连续波被动模式锁定的铒掺杂(ER掺杂)激光腔提供稳定的自动启动脉冲,脉冲持续时间为0.88≤PS和腔体重复率为5.47?MHz。我们的结果有助于越来越多的工作机构,研究超大PQD的非线性光学性能,其为未来超快光子技术的这种二维(2D)纳米材料的新机会提供了新的机会。

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