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Artificial Second-OrderNonlinear Optics in a Centrosymmetric Optical Material BiVO4: Breaking the Prerequisite for Nonlinear Optical Materials

机译:人工二阶中心对称光学材料BiVO4中的非线性光学:打破了非线性光学材料的先决条件

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摘要

Second-order nonlinear optics (NLO) is the foundation of frequency conversion for the generation of coherent light at frequencies where lasers have no emissions or operate poorly. The prerequisite for NLO materials is noncentrosymmetric symmetry that can generate an effectively non-counterbalanced spontaneous electronic polarization. Here, we propose that this material restriction can be broadened by controlling the electron distribution with a local internal electrostatic field (IEF), and we demonstrate artificially created and manipulated second harmonic generation (SHG) in a centrosymmetric optical material, a superimposed Co2+- and Mo6+-doped BiVO4 thin film with 2/m point group symmetry, where a homojunction producing tunable effective polarization is formed. The SHG was characterized and tuned by IEF. This work breaks the structural symmetry constraint on NLO materials. Besides, the phase-matching-like condition was realized for the further improvement of the efficient frequency conversion. Because polarization is also a prerequisite for many other functions besides SHG, we believe that this work should provide some inspiration for the further development of optoelectronic, photonic, and electronicmaterials.
机译:二阶非线性光学(NLO)是频率转换的基础,用于在激光不发射或运行不佳的频率下产生相干光。 NLO材料的先决条件是非中心对称对称性,它可以产生有效的非平衡自发电子极化。在这里,我们建议可以通过使用局部内部静电场(IEF)控制电子分布来扩大这种材料限制,并且我们演示了在中心对称光学材料中人工创建和操纵的二次谐波生成(SHG),即叠加的Co 2 + -和Mo 6 + 掺杂的BiVO4薄膜,其中形成了产生可调谐有效极化的同质结。 SHG由IEF进行了表征和调整。这项工作打破了NLO材料的结构对称性约束。此外,实现了类似相位匹配的条件,以进一步提高有效的频率转换。由于除SHG之外,极化也是其他许多功能的前提,因此我们认为这项工作应为光电子,光子和电子的进一步发展提供一些启发。材料。

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