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Thermally driven continuous-wave and pulsed optical vortex

机译:热驱动连续波和脉冲光学涡旋

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We demonstrated a continuous-wave (cw) and pulsed optical vortex with topological charges driven by heat generated during the lasing process without introducing the astigmatism effect and reducing lasing efficiency. During the lasing process, the topological charges were changeable by the thermal-induced lens and selected by the mode-matching between the pump and oscillating beams. With a graphene sample as the saturable absorber, a pulsed optical vortex was achieved at a wavelength of 1.36 μm, which identified that graphene could be used as a pulse modulator for the generation of a pulsed optical vortex. Thermally driven cw and pulsed optical vortexes should have various promising applications based on the compact structure, changeable topological charges, and specific wavelength.
机译:我们演示了连续波(cw)和脉冲光学涡流,其中激光发射过程中产生的热量驱动了拓扑电荷,而没有引入像散效应并降低了激光发射效率。在发射激光的过程中,拓扑电荷可以通过热感应透镜改变,并可以通过泵浦光束和振荡光束之间的模式匹配来选择。使用石墨烯样品作为可饱和吸收剂,在1.36μm的波长处实现了脉冲光学涡旋,这表明石墨烯可以用作脉冲调制器以产生脉冲光学涡旋。基于紧凑的结构,可变的拓扑电荷和特定的波长,热驱动的连续波和脉冲光学涡旋应具有各种有希望的应用。

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