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Generating mid-IR octave-spanning supercontinua and few-cycle pulses with solitons in phase-mismatched quadratic nonlinear crystals

机译:在相位不匹配的二次非线性晶体中产生具有孤子的中红外倍频程超连续和几周期脉冲

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摘要

We discuss a novel method for generating octave-spanning supercontinua and few-cycle pulses in the important mid-IR wavelength range. The technique relies on strongly phase-mismatched cascaded second-harmonic generation (SHG) in mid-IR nonlinear frequency conversion crystals. Importantly we here investigate the so-called noncritical SHG case, where no phase matching can be achieved but as a compensation the largest quadratic nonlinearities are exploited. A self-defocusing temporal soliton can be excited if the cascading nonlinearity is larger than the competing material self-focusing nonlinearity, and we define a suitable figure of merit to screen a wide range of mid-IR dielectric and semiconductor materials with large effective second-order nonlinearities deff. The best candidates have simultaneously a large bandgap and a large deff. We show selected realistic numerical examples using one of the promising crystals: in one case soliton pulse compression from 50 fs to 15 fs (1.5 cycles) at 3.0 μm is achieved, and at the same time a 3-cycle dispersive wave at 5.0 μm is formed that can be isolated using a long-pass filter. In another example we show that extremely broadband supercontinua can form spanning the near-IR to the end of the mid-IR (nearly 4 octaves).
机译:我们讨论了一种在重要的中红外波长范围内生成跨八度的超连续谱和几个周期脉冲的新颖方法。该技术依赖于中红外非线性频率转换晶体中强相位不匹配的级联二次谐波产生(SHG)。重要的是,我们在这里研究了所谓的非临界SHG情况,在该情况下无法实现相位匹配,但作为补偿,利用了最大的二次非线性。如果级联的非线性大于竞争材料的自聚焦非线性,则可以激发自离散的时间孤子,我们定义了一个合适的品质因数,以筛选具有大有效第二次谐波的各种中红外电介质和半导体材料。阶非线性度最佳候选者同时具有较大的带隙和较大的deff。我们使用一种有前途的晶体展示了一些实际的数值示例:在一种情况下,在3.0μm处实现了从50 fs到15 fs(1.5周期)的孤子脉冲压缩,同时在5.0μm处实现了3周期色散可以使用长通滤波器将其隔离。在另一个示例中,我们表明,可以形成非常宽带的超连续谱,范围涵盖从近红外到中红外的末尾(近4个八度)。

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