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Practical Design and Applications of Ultrafast Semiconductor Disk Lasers

机译:超快半导体圆盘激光器的实用设计和应用

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摘要

Vertical External Cavity Surface Emitting Lasers (VECSELs) have become well established in recent years for their design flexibility and promising power scalability. Recent efforts in VECSEL development have focused heavily on expanding the medium into the ultrafast regime of modelocked operation. Presented in this thesis is a detailed discussion regarding the development of ultrafast VECSEL devices. Achievements in continuous wave (CW) operation will be highlighted, followed by several chapters detailing the engineering challenges and design solutions which enable modelocked operation of VECSELs in the ultrafast regime, including the design of the saturable absorbers used to enforce modelocking, management of the net group delay dispersion (GDD) inside the cavity, and the design of the active region to support pulse durations on the order of 100 fs. Work involving specific applications - VECSELs emitting on multiple wavelengths simultaneously and the use of VECSEL seed oscillators for amplification and spectral broadening - will also be presented.udKey experimental results will include a novel multi-fold cavity design that produced record-setting peak powers of 6.3 kW from a modelocked VECSEL, an octave-spanning supercontinuum with an average power of 2 W generated using a VECSEL seed and a 2-stage Yb fiber amplifier, and two separate experiments where a VECSEL was made to emit on multiple wavelengths simultaneously in modelocked and highly stable CW operation, respectively. Further, many diagnostic and characterization measurements will be presented, most notably the in-situ probing of a VECSEL gain medium during stable modelocked operation with temporal resolution on the order of 100 fs, but also including characterization of the relaxation rates in different saturable absorber designs and the effectiveness of different methods for managing the net GDD of a device.
机译:垂直外腔表面发射激光器(VECSEL)近年来因其设计的灵活性和良好的功率可扩展性而得到了公认。 VECSEL开发方面的最新努力主要集中在将介质扩展到超快的ockockock操作状态。本文提出了有关超快VECSEL器件开发的详细讨论。将重点介绍连续波(CW)运行方面的成就,随后几章详细介绍了工程挑战和设计解决方案,这些挑战和设计解决方案使VECSEL在超快状态下能够进行模型化操作,包括用于执行模型化,网络管理的可饱和吸收器的设计。腔内的群延迟色散(GDD),以及支持脉冲持续时间约为100 fs的有源区的设计。还将介绍涉及特定应用的工作-同时发射多种波长的VECSEL,以及使用VECSEL种子振荡器进行放大和光谱加宽。 ud关键实验结果将包括新颖的多重腔设计,产生创纪录的峰值功率。来自一个对接的VECSEL 6.3 kW,一个跨度八度的超连续谱,使用VECSEL种子和一个两级Yb光纤放大器产生平均2 W的功率,以及两个独立的实验,其中一个VECSEL在对接的ocked中同时发出多种波长和高度稳定的CW操作。此外,将提出许多诊断和特性测量结果,最值得注意的是在稳定的对接操作期间以100 fs量级的时间分辨率对VECSEL增益介质进行原位探测,还包括对不同可饱和吸收器设计中的弛豫率进行特性描述以及管理设备的净GDD的不同方法的有效性。

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  • 作者

    Baker Caleb W.;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en_US
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