Cladding Pumped Thulium-Ytterbium Short Pulse Fiber Lasers

Babar Ibrahim Muhammad
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引用次数: 1

Abstract

This chapter describes double clad fiber along with cladding pump technique in which pump light is coupled in the inner cladding of fiber thereby interacting with doped core through total internal reflection. Lasers operating in continuous wave mode have limited output power. Their output power can be enhanced to a great extent by concentrating the available energy in a single or in a periodic sequence of optical pulses. This is achieved by Q-switch and modelock techniques. Q-switched and modelocked lasers can be real-ized by active and passive means. Active technique is based on active loss modulation by using mechanical, electro-optic or acousto-optic based modulators. However, such techniques require complicated electronic circuits and have limited gain bandwidth. The attention then moves towards the passive technique which is low cost, compact in size, gives reliable operation without high voltages and provides simple cavity design without need for external electronics. Passive technique employs a saturable absorber, based on materials like carbon nanotubes, graphene, molybdenum di-sulfide etc. A brief descrip- tion of pulsed fiber lasers and solitons in view of modelocking are described in the text. Moreover examples of Q-switched and modelocked lasers are also presented by using Thulium-Ytterbium co-doped double clad fiber. A cladding pump technique is employed for the purpose.
包层泵浦铥镱短脉冲光纤激光器
本章描述了双包层光纤和包层泵浦技术,其中泵浦光耦合在光纤的内包层中,通过全内反射与掺杂芯相互作用。在连续波模式下工作的激光器具有有限的输出功率。通过将可用能量集中在单个光脉冲或周期性光脉冲序列中,可以在很大程度上提高其输出功率。这是通过q开关和模型锁技术实现的。调q和锁模激光器可以通过主动和被动两种方式实现。有源技术是利用机械、电光或声光调制器进行有源损耗调制的技术。然而,这种技术需要复杂的电子电路和有限的增益带宽。然后注意力转向无源技术,这种技术成本低,体积小,在没有高压的情况下提供可靠的操作,并且提供简单的腔体设计,不需要外部电子设备。被动技术采用可饱和吸收剂,以碳纳米管、石墨烯、二硫化钼等材料为基础。本文从模型锁定的角度对脉冲光纤激光器和孤子作了简要的描述。此外,还介绍了利用铥镱共掺双包层光纤实现调q和锁模激光器的实例。为此,采用了包层泵技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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