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Far-detuned four-wave mixing for mid-infrared wavelength conversion in chalcogenide As_2S_5 suspended core fiber

机译:硫属元素化物As_2S_5悬浮纤芯光纤的失谐四波混频用于中红外波长转换

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摘要

The mid-infrared (MIR) range is of great interest because fundamental molecular vibrational absorption bands exist in the MIR range. In the MIR range, typically, lasing can be generated using quantum cascade lasers, cascaded Raman lasers, and optical parametric oscillators (OPOs). Recently, fiber OPOs (FOPOs) in the MIR range have received attention because of their flexibility of the parametric gain curve designing the chromatic dispersion. Chalcogenide glass is the promising candidate for MIR FOPO because of their wide transmission window and high nonlinear coefficient. In the present paper, we design the chromatic dispersion of four-hole As_2S_5 chalcogenide suspended core fiber (SCF), and demonstrate a far-detuned four-wave mixing (FWM) for MIR FOPO. We design the four-hole As_2S_5 chalcogenide SCF for far-detuned FWM using a ~2 μm pump source. A four-hole As_2S_5 chalcogenide SCF which has a core diameter of 3.25μm is fabricated using a homemade draw tower. We experimentally observed far-detuned FWM in the four-hole As_2S_5 chalcogenide SCF. A detuning frequency of over 80 THz is measured in 21 cm long fiber using a 2.7 ps pulse laser at 1.96 μm. The experimental observation was confirmed by numerical demonstration.
机译:由于基本分子振动吸收带存在于MIR范围内,因此中红外(MIR)范围引起了人们的极大兴趣。在MIR范围内,通常可以使用量子级联激光器,级联拉曼激光器和光学参量振荡器(OPO)产生激光。近年来,由于MIR范围内的光纤OPO(FOPO)具有设计色散的参数增益曲线的灵活性,因此受到了关注。硫族化物玻璃具有宽的透射窗口和高非线性系数,因此是MIR FOPO的有前途的候选者。在本文中,我们设计了四孔As_2S_5硫族化物悬浮芯纤维(SCF)的色散,并演示了用于MIR FOPO的远失谐四波混频(FWM)。我们使用〜2μm泵浦源设计了用于远失谐FWM的四孔As_2S_5硫族化物SCF。使用自制的牵引塔制造了四孔As_2S_5硫族化物SCF,其芯直径为3.25μm。我们在实验中观察到四孔As_2S_5硫族化物SCF中的失谐FWM。使用1.96μm的2.7 ps脉冲激光在21 cm长的光纤中测得的失谐频率超过80 THz。实验观察通过数值论证得到了证实。

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