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Bandwidth-controllable tunable Q-switched thulium fibre laser

机译:带宽可控的可调Q开关th光纤激光器

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Sources that offer both high peak power and wavelength flexibility within the two-micron wavelength band are of interest for a number of applications, including spectroscopic characterisation, laser processing of transparent polymers and laser surgery. They also provide a platform for nonlinear frequency conversion to the mid-infrared wavelength band. In this paper, we present a high-peak-power pulsed single-mode fibre source that offers flexibility in operating wavelength as well as spectral bandwidth. The source employs an acousto-optic modulator in combination with a diffraction grating in a novel external feedback cavity arrangement to achieve ‘Q-switching’ and the desired spectral control. In this configuration the role of the acousto-optic modulator is two-fold: Firstly, it provides the means to time gate the round-trip loss for the fed back first-order diffracted beam to generate Q-switched pulses. Secondly, it has the effect of supressing longitudinal mode build-up by introducing a frequency shift upon on the fed back beam by twice the acousto-optic drive frequency (per round trip). The frequency shift in combination with the relatively small number of round trips needed for efficient energy extraction causes the Q-switched fibre source to behave like a time-gated multi-pass amplifier spontaneous emission (ASE) source. The resulting spectral profile is broadband with bandwidth determined by the laser gain bandwidth and the condition for Bragg diffraction in the AOM, with no evidence of the discontinuous spectral structure typical of conventional fibre laser sources. By introducing a further dispersive element such as diffraction grating it is possible for wavelength selection to be achieved as well as spectral shaping of the emission spectrum through the use slits or apertures.
机译:在2微米波长带内提供高峰值功率和波长灵活性的光源对于许多应用都是令人关注的,包括光谱表征,透明聚合物的激光加工和激光手术。它们还提供了一个将非线性频率转换为中红外波段的平台。在本文中,我们提出了一种高峰值功率脉冲单模光纤源,它在工作波长以及光谱带宽方面具有灵活性。该光源在新型外部反馈腔布置中采用了声光调制器和衍射光栅,以实现“ Q切换”和所需的光谱控制。在这种配置中,声光调制器的作用是双重的:首先,它提供了一种方法,可以对门控的一次衍射光束的往返损耗进行时间门控,以产生Q开关脉冲。其次,它通过在反馈光束上引入两倍于声光驱动频率(每次往返)的频率偏移,从而抑制了纵向模式的建立。频率偏移与有效能量提取所需的相对较少的往返行程相结合,导致调Q光纤源的行为类似于时间门控多通放大器自发辐射(ASE)源。最终的光谱轮廓是宽带,其带宽由激光增益带宽和AOM中的布拉格衍射条件决定,没有证据表明常规光纤激光源具有典型的不连续光谱结构。通过引入另外的色散元件,例如衍射光栅,可以实现波长选择以及通过使用狭缝或孔对发射光谱的光谱整形。

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