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PMMA Sandwiched Bi2Te3 Layer as a Saturable Absorber in Mode-Locked Fiber Laser

机译:PMMA夹层Bi2Te3层作为锁模光纤激光器中的饱和吸收剂

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In this paper, we fabricated a PMMA sandwiched Bi2Te3 self-assembly layer as a saturable absorber device, which was used as a passive mode locker for ultrafast pulse generation at the telecommunication band. Nanosheets of Bi2Te3 as a bulk topological insulator were successfully synthesized through a solvothermal treatment and self-assemble method to form a thin film at a water-air interface. In order to transfer the Bi2Te3 self-assembly layer to the optical fiber end, we design a construction of two PMMA layers sandwiched self-assembly layer. By incorporating this saturable absorber into an erbium-doped fiber laser, femtosecond mode-locking operation was experimentally demonstrated. The output pulse width is about 505 fs. Our results indicate that PMMA sandwiched topological insulator layer structure could be an improvement technology in traditional PMMA transfer method and could be used as a long-term stable saturable absorber for the passively mode locking lasers.
机译:在本文中,我们制造了一个夹有BiMMA的BiMMA自组装层作为可饱和吸收体器件,该器件用作无源模式锁定器,可在电信频段产生超快脉冲。通过溶剂热处理和自组装方法成功地合成了Bi2Te3纳米片作为本体拓扑绝缘体,从而在水-空气界面形成薄膜。为了将Bi2Te3自组装层转移到光纤末端,我们设计了一个夹有自组装层的两个PMMA层。通过将该可饱和吸收剂掺入掺fiber光纤激光器中,实验证明了飞秒锁模操作。输出脉冲宽度约为505 fs。我们的结果表明,PMMA夹层拓扑绝缘体层结构可能是传统PMMA转移方法中的一项改进技术,并且可用作被动模式锁定激光器的长期稳定的可饱和吸收体。

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