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Fiber laser driven dual photonic crystal fiber femtosecond mid-infrared source tunable in the range of 4.2 to 9 μm

机译:光纤激光器驱动的双光子晶体光纤飞秒中红外光源的可调范围为4.2至9μm

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We report a fiber based approach to broadly tunable femtosecond mid-IR source based on difference frequency mixing of the outputs from dual photonic crystal fibers (PCF) pumped by a femtosecond fiber laser, which is a custom-built Yb-doped fiber chirped pulse amplifier (CPA) delivering 1.35 W, 300 fs, 40 MHz pulses centered at 1035 nm. The CPA output is split into two arms to pump two different types of PCFs for generation of the spectrally separated pulses. The shorter wavelength pulses are generated in one PCF with its single zero dispersion wavelength (ZDW) at 1040 nm. Low normal dispersion around the pumping wavelength enables spectral broadening dominated by self-phase modulation (SPM), which extends from 970 to 1092 nm with up to 340 mW of average power. The longer wavelength pulses are generated in a second PCF which has two closely spaced ZDWs around the laser wavelength. Facilitated by its special dispersion profile, the laser wavelength is converted to the normal dispersion region of the fiber, leading to the generation of the narrow-band intense Stokes pulses with 1 to 1.25 nJ of pulse energy at a conversion efficiency of ~30% from the laser pulses. By difference mixing the outputs from both PCFs in a type-Ⅱ AgGaS_2 crystal, mid-IR pulses tunable from 4.2 to 9 μm are readily generated with its average power ranging from 135 - 640 μW, corresponding to 3 - 16 pJ of pulse energy. The reported approach provides a power-scalable route to the generation of broadly tunable femtosecond mid-IR pulses, which we believe to be a promising solution for developing compact, economic and high performance mid-IR sources.
机译:我们报告了一种基于光纤的方法,它基于飞秒光纤激光器泵浦的双光子晶体光纤(PCF)的输出的差频混频,该方法可广泛调谐飞秒中红外源,这是定制的掺Yb光纤fiber脉冲放大器(CPA)提供了以1035 nm为中心的1.35 W,300 fs,40 MHz脉冲。 CPA输出分为两个臂,以泵浦两种不同类型的PCF,以产生频谱上分离的脉冲。较短的波长脉冲在一个PCF中产生,其单个零色散波长(ZDW)为1040 nm。泵浦波长周围的正常色散低,从而使光谱展宽受自相位调制(SPM)支配,自相位调制(SPM)从970扩展到1092 nm,平均功率高达340 mW。较长的波长脉冲在第二个PCF中产生,第二个PCF在激光波长附近有两个紧密间隔的ZDW。由于其特殊的色散分布,激光波长被转换为光纤的正常色散区域,从而导致产生窄带强斯托克斯脉冲,脉冲能量为1至1.25 nJ,转换效率约为30%。激光脉冲。通过将两种PCF的输出在II型AgGaS_2晶体中进行差分混合,可以轻松产生可调节的4.2至9μm的中红外脉冲,其平均功率在135-640μW的范围内,相当于3-16 pJ的脉冲能量。报告的方法为生成可广泛调节的飞秒中红外脉冲提供了功率可扩展的途径,我们认为这是开发紧凑,经济和高性能的中红外源的有希望的解决方案。

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