论文标题
3D钙钛矿超晶体中巨型光学折射支持的无约束波长转换
Constraint-free wavelength conversion supported by giant optical refraction in a 3D perovskite supercrystal
论文作者
论文摘要
材料中的非线性响应随其折射率为$ n^4 $而增加。通常,$ n \ sim $ 1 $ 1,因此衍射,分散和色度散步极限非线性散射。具有周期性3D极化结构的铁电晶体通过多功能Cherenkov和准阶段匹配机制克服了其中一些约束。三维自我结构也会导致巨大的光学折射。在这里,我们在巨大宽带折射的条件下在KTN:li中进行了第二谐波生成实验。增强的响应会导致波长转换以散装切伦科夫辐射的形式发生,而无需衍射和色彩散步,即使存在强波矢量不匹配和高度聚焦的光束也是如此。该过程以近红外光谱中超过100 nm的广泛频谱接受,这是一种超过$ \ pm 40^{\ circ} $的超宽角度接受,没有极化的选择性,并且可以调节以允许散装超级颈部生成。结果铺平了高效和适应性的非线性光学设备的道路,并有望单光子到单个光子 - 光子非线性光学元件。
Nonlinear response in a material increases with its index of refraction as $n^4$. Commonly, $n \sim$ 1 so that diffraction, dispersion, and chromatic walk-off limit nonlinear scattering. Ferroelectric crystals with a periodic 3D polarization structure overcome some of these constraints through versatile Cherenkov and quasi-phase-matching mechanisms. Three-dimensional self-structuring can also lead to a giant optical refraction. Here, we perform second-harmonic-generation experiments in KTN:Li in conditions of giant broadband refraction. Enhanced response causes wavelength conversion to occur in the form of bulk Cherenkov radiation without diffraction and chromatic walk-off, even in the presence of strong wave-vector mismatch and highly focused beams. The process occurs with a wide spectral acceptance of more than 100 nm in the near infrared spectrum, an ultra-wide angular acceptance of up to $\pm 40^{\circ}$, with no polarization selectivity, and can be tuned to allow bulk supercontinuum generation. Results pave the way to highly efficient and adaptable nonlinear optical devices with the promise of single-photon-to-single-photon nonlinear optics.