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BaMgF4: An ultra-transparent two-dimensional nonlinear photonic crystal with strong χ(3) response in the UV spectral region

机译:BaMgF4:一种超透明的二维非线性光子晶体,在紫外光谱区具有较强的χ(3)响应

摘要

Ferroelectric patterning is often used in advanced photonics and optoelectronic devices to increase their operational bandwidth and functionality, providing novel and unique performances. However, the extension of the ferroelectric structures to two-dimensional geometries is currently limited to very few oxides and phosphates systems, which constrains its current and future applications. Here, careful processing based on e-beam lithography and poling is employed to fabricate the first example of a two-dimensional nonlinear photonic crystal in Barium Magnesium Fluoride, BaMgF4, a ferroelectric fluoride crystal with an extraordinary transparency ranging from the deep ultraviolet (≈126 nm) to the mid infrared (≈13 μm). The optical characterization shows the possibility of obtaining simultaneously up to three different Cerenkov-type second harmonic generation processes distributed in a conical geometry via χ(2)-quasi-phase-matching technique. Additionally, the remarkably high χ(3) nonlinear response of BaMgF4 crystal in the UV spectral region is exploited to demonstrate what is believed to be the highest direct UV-third harmonic generation conversion efficiency in a solid state system via pure χ(3) nonlinear process. Together, the results highlight the outstanding opportunities offered by nonlinear photonic structures as innovative avenues to manipulate the light generation and control with reliable multifunctional optical character. © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:铁电图案化通常用于先进的光子学和光电设备中,以增加其工作带宽和功能,从而提供新颖而独特的性能。但是,铁电结构扩展到二维几何形状目前仅限于很少的氧化物和磷酸盐系统,这限制了其当前和未来的应用。在这里,基于电子束光刻和极化的精心处理被用于制造氟化钡镁BaMgF4中的二维非线性光子晶体的第一个示例,这是一种铁电氟化物晶体,具有极高的透明度,范围从深紫外线(≈126) nm)到中红外(≈13μm)。光学表征显示了通过χ(2)-准相位匹配技术同时获得多达三个不同的圆锥形几何分布的切伦科夫型二次谐波生成过程的可能性。此外,利用BaMgF4晶体在紫外光谱区中的极高的χ(3)非线性响应来证明通过纯χ(3)非线性在固态系统中具有最高的直接UV-三次谐波生成转换效率处理。总之,这些结果凸显了非线性光子结构所提供的巨大机遇,它们是创新途径来操纵光的产生和具有可靠多功能光学特性的控制。 ©2013 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim。

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