概括
一个全新的全纤维马米舍夫振荡器 (MO) 使用吸收波器自动启动超快脉冲生成. 这种设计可以在没有外部播种的情况下实现高能超短脉冲,从而实现先进的光纤激光应用.
科学领域:
- 光学和光子学 在光学和光子学.
- 激光物理 激光物理
- 材料科学 材料科学 材料科学
背景情况:
- 马米舍夫振荡器 (MOS) 对于产生超短光脉冲至关重要.
- 在光纤激光器中实现自启动模式锁定简化了操作并扩大了应用.
- 传统的MO设计往往需要复杂的配置或外部播种来实现稳定的运行.
研究的目的:
- 提出并实验证明一个自启动的全纤维马米舍夫振荡器 (MO).
- 调查基于Tm3+的吸收过器在MOs中用于光谱成型的使用.
- 分析过器特性和功率对自启动模式锁定和脉冲生成的影响.
主要方法:
- 设计和整合一个使用Tm3+离子在1560nm附近的短通吸收波器.
- 用常规纤维过器连接吸收过器,以创建一个偏移光谱过阶段.
- 系统地调查功率和吸收过器切断深度对MO性能的影响.
主要成果:
- 成功演示了一种自启动的全纤维马米舍夫振荡器,在1550纳米运行.
- 自动启动模式锁定通过两臂功率为390mW实现.
- 产生超短脉冲的能量为6.52nJ,持续时间为225fs,总谱带宽为502nm.
结论:
- 开发的吸收过器有效地促进了MO的自启动模式锁定.
- 该MO具有强大的自动启动能力,无需种子注入或辅助臂.
- 这种简单的设计为实现新型高能超快光纤激光器提供了有前途的途径.
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