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Comb generation of second and third harmonics at high intensive femtosecond pulse propagation in medium with quadratic and cubic nonlinearities

机译:在具有二次和立方非线性的媒体中的高强化飞秒脉冲传播中梳成第二和第三谐波

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SHG is used in many practical applications such as a substance diagnostics, and imaging of various processes as well as for a frequency conversion of an optical pulse. As a rule, the frequency doubling is used also for a generation of the optical wave with tripled frequency by using the mixing of optical radiation with the basic and doubled frequencies. Nevertheless, THG can occur in a medium with cubic nonlinear response and in a medium with quadratic nonlinear response if the incident laser pulse intensity of the basic wave is enough high or if the intensities of the interacting waves increase until such values which are sufficient for occurring the cubic nonlinearity of a crystal. As a consequence, THG may occur. We investigate an efficiency of comb frequency generation if an intensity of the incident femtosecond pulse is sufficiently high . Obviously, one of these generation processes occurs with a big phase mismatching. We investigate comb generation efficiency in a dependence of the phase mismatching between interacting waves and other parameters. As a result, we observe various regimes of comb generation. It should be emphasized that we find out the generation regime with synchronic changing of the maximal intensities of all waves. At the same time, shape of the appearing sub-pulses at these frequencies are similar to Gaussian one. Our consideration is based on computer simulation with taking into account the SOD, phase mismatching, self-and cross-modulation for interacting waves.
机译:SHG是在许多实际应用中使用,诸如物质的诊断,和各种处理,以及用于光脉冲的频率转换的成像。作为一项规则,该倍频是通过使用光辐射的混合的基本和加倍的频率还用于生成与三倍频率的光波。尽管如此,THG可发生在具有立方非线性响应的介质,并与二次非线性响应的介质,如果基本波的入射激光脉冲的强度足够高,或者如果相互作用的波的强度增加,直到其足以发生的这样的值晶体的三次非线性。因此,可能会出现THG。如果入射光飞秒脉冲的强度是足够高的我们调查梳频率生成的效率。显然,这些生成过程中的一个有一个大的相位失配发生。我们研究在相相互作用的波和其他参数之间的失配的依赖性梳发电效率。其结果是,我们观察梳产生的各种制度。应当强调的是,我们发现了所有海浪的最大强度的共时性变化的产生机制。与此同时,在这些频率下出现的子脉冲的形状类似于高斯之一。我们的考虑是基于计算机仿真考虑到SOD,相位不匹配,自营和交叉调制的相互作用的波。

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