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Parametric generation of broadband biphotons in a periodic sequence of thin crystals

机译:薄晶体周期序列中宽带双光子的参数生成

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Collinear parametric scattering of light under type-II phase matching is considered in a periodic sequence of nonlinear cells made of BBO crystals. The possibilities of reducing the duration of the wave packets of biphotons and increasing their intensity under monochromatic pumping are studied. The analysis is based on the account of dispersion of the refractive indices using Sellmeier equations. The obtained results allow one to conclude that at an appropriate choice of the crystal thicknesses and the number of cells, it is possible to significantly increase the flux of broadband biphotons and obtain extremely short quantum packets. It is shown that for sufficiently small thicknesses of individual crystals (layers), this system exhibits a fine structure in the spectrum of biphotons: with an increase in the number of cells (layers) the broadband spectrum is divided into a number of narrow bands and the number of these bands increases. When use is made of a nonlinear BBO crystal, this method allows one to obtain ultrashort packets of biphotons with duration tau(0) approximate to 2 fs. Compared with a different method of generation of broadband biphotons, which is based on the use of quasi-phase-matched periodically poled crystals, the method studied in this paper does not necessitate the need for the phase modulation of a biphoton to be converted into the amplitude modulation.
机译:在由BBO晶体制成的非线性晶胞的周期性序列中,考虑了II型相位匹配下光的共线参量散射。研究了在单色泵浦下减少双光子波包的持续时间并增加其强度的可能性。该分析基于使用Sellmeier方程的折射率分散。获得的结果使我们得出结论,在适当选择晶体厚度和晶胞数量的情况下,可以显着增加宽带双光子的通量并获得极短的量子包。结果表明,对于单个晶体(层)足够小的厚度,该系统在双光子的光谱中显示出精细的结构:随着单元(层)数量的增加,宽带光谱被分为多个窄带,并且这些乐队的数量增加了。当使用非线性BBO晶体时,此方法允许获得持续时间tau(0)约2 fs的双光子超短包。与使用准相位匹配的周期性极化晶体的另一种宽带双光子生成方法相比,本文研究的方法无需将双光子的相位调制转换为光子晶体。调幅。

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