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Properties of the peaks of second harmonic light through Fibonacci-class ferroelectric domains

机译:通过斐波那契级铁电畴的二次谐波的峰的性质

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After establishing the method of constructing a class of one-dimensional (1D) Fibonacci-class quasiperiodic (FC(n)) ferroelectric domains system, we have studied the properties of the electric field of the second harmonic generation (SHG) by means of the small-signal approximation in the case of the vertically transmission. It was found that only the second harmonic light (SHL) peaks which were indexed by two special integers q and p world be the brightest and the spectra whose positions were indexed by two special integers q and p would be the brightest and the spectra whose positions were decided by successive FC(n) integers qF and pF were perfect self-similar without considering the dispersive effect of the refractive index on SHL. The effect of the vacancies for some special spectral lines was also studied generally. The analytic results were confirmed by the numerical simulations.
机译:在建立构造一维(1D)斐波那契级拟周期(FC(n))铁电畴系统的方法之后,我们通过二次谐波生成(SHG)的方法研究了电场的性质。在垂直传输的情况下,小信号近似。发现只有由两个特殊整数q和p world索引的二次谐波(SHL)峰是最亮的,而由两个特殊整数q和p索引的位置的光谱将是最亮的,并且其位置由两个特殊整数q和p索引的光谱由连续的FC(n)整数决定,qF和pF完全自相似,而没有考虑折射率对SHL的色散影响。还普遍研究了空位对某些特殊光谱线的影响。数值模拟证实了分析结果。

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