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Efficient femtosecond 50 MHz repetition rate mid-IR source up to 17 μm by difference-frequency generation in AgGaSe_2

机译:通过在AgGaSe_2中产生差频来实现高达17μm的有效飞秒50 MHz重复频率中红外源

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We present an efficient coherent source widely tunable in the mid-infrared (mid-IR) spectral range consisting of a novel femtosecond Yb-fiber laser operating at ~50 MHz repetition rate, a synchronously-pumped OPO (SPOPO) and difference-frequency generation (DFG) in AgGaSe_2. With an average input power of 5 W for ~260 fs pump pulses at 1034 nm, the SPOPO outputs are tunable from ~1710 to 1950 nm (signal) and from 2200 to 2600 nm (idler) with pulse durations between 200 and 250 fs over the entire tuning range. After temporally overlapping signal and idler through a delay line, the two beams are spatially recombined with a dichroic mirror and focused to a beam diameter of ~75 μm. For DFG we employ an uncoated 2-mm-thick AgGaSe_2 nonlinear crystal cut for type-Ⅰ interaction at θ=57°. The generated femtosecond mid-IR pulses are continuously tunable between 5 and 17 μm with average power of up to 69 mW at 6 μm and more than 1 mW at 17 μm. Their spectra and autocorrelation traces are measured up to 12 μm and 8 μm, respectively, and indicate that the input spectral bandwidth and pulse duration are maintained to a great extent in the nonlinear frequency conversion processes. The DFG pulse width measured at 7.2 μm amounts to ~300 fs (FWHM). The measured spectral bandwidth supports ~150 fs Gaussian pulse durations across the entire DFG tuning range. For the first time mid-IR pulses with energy exceeding 1 nJ are generated at such high repetition rates.
机译:我们提出了一种有效的相干光源,可在中红外(中红外)光谱范围内进行广泛调谐,该光源包括以〜50 MHz重复频率工作的新型飞秒Yb光纤激光器,同步泵浦OPO(SPOPO)和差频产生(DFG)在AgGaSe_2中。在1034 nm处约260 fs的泵浦脉冲,平均输入功率为5 W,SPOPO输出可在〜1710至1950 nm(信号)和2200至2600 nm(空载)之间进行调谐,脉冲持续时间在200至250 fs之间整个调整范围。在通过延迟线使信号和惰轮在时间上重叠之后,两束光束在二向色镜处进行空间重组,并聚焦到约75μm的光束直径。对于DFG,我们使用未镀膜的2mm厚的AgGaSe_2非线性晶体切割进行θ= 57°的Ⅰ型相互作用。产生的飞秒中红外脉冲可在5和17μm之间连续可调,平均功率在6μm时高达69 mW,在17μm时超过1 mW。它们的光谱和自相关迹线分别测量到高达12μm和8μm,这表明在非线性频率转换过程中,输入光谱带宽和脉冲持续时间在很大程度上得以保持。在7.2μm处测得的DFG脉冲宽度约为〜300 fs(FWHM)。测得的频谱带宽在整个DFG调谐范围内支持约150 fs高斯脉冲持续时间。首次以如此高的重复频率产生能量超过1 nJ的中红外脉冲。

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