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Vector method for studying the second-harmonic-generation light derived from complex periodic ferroelectric domains

机译:研究复杂周期性铁电畴产生的第二谐波光的矢量方法

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摘要

In this Letter, in order to overcome the disadvantages of controlling the second-harmonic-generation (SHG) light derived from the traditional one-dimensional (1D) periodic ferroelectric domains we propose a kind of so-called complex periodic ferroelectric structure (CPFS), which unit cell is composed of even layers of positive and negative domains arranged alternatively following aperiodic sequence. It is found that comparing with the traditional periodic structure. CPFS cannot offer more reciprocal vector compensations for the mismatching phase, but CPFS may provide larger effective nonlinear coefficients (ENCs) in high-order quasi-phase-matching (QPM) and possesses advantages of the amplitude modulation for SHG peaks. In this Letter we study CPFS by use of vector method (VM), where the contribution to ENC for each domain or each unit cell will be treated as a vector and the QPM condition for CPFS and the modulation effect of aperiodic unit cells have been obtained. Without any Fourier transformation VM treats the grating function in real space and will be very convenient and intuitive. Both VM and CPFS would possess potential applications in the field of SHG investigations.
机译:在这封信中,为了克服控制传统一维(1D)周期性铁电畴中产生的第二谐波产生(SHG)光的缺点,我们提出了一种所谓的复杂周期性铁电结构(CPFS) ,该单位单元由非周期性排列的正负域的偶数层组成。发现与传统的周期结构相比。 CPFS不能为失配相位提供更多的互逆矢量补偿,但是CPFS在高阶准相位匹配(QPM)中可以提供更大的有效非线性系数(ENC),并且具有对SHG峰进行幅度调制的优势。在这封信中,我们使用向量法(VM)研究CPFS,其中将每个域或每个晶胞对ENC的贡献视为一个载体,并获得了CPFS的QPM条件和非周期性晶胞的调制效果。如果不进行任何傅里叶变换,VM会在现实空间中处理光栅功能,并且非常方便和直观。 VM和CPFS都将在SHG调查领域中拥有潜在的应用程序。

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