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从范德华层状晶体硫代磷酸铜铟中高效产生高次谐波。

Efficient High-Order Harmonic Generation from the van der Waals Layered Crystal Copper Indium Thiophosphate.

作者信息

Mushtaq Aamir, Journigan Troie, Turkowski Volodymyr, Siebenaller Ryan, Jeff Dylan A, Truong Tran-Chau, Noor Mohamed Yaseen, Khatri Dipendra, Lantigua Christopher, Harrison Kamal, Khondaker Saiful I, Rowe Emmanuel, Goldstein Jonathan T, Susner Michael A, Chowdhury Enam, Chini Michael

机构信息

Department of Physics, University of Central Florida, Orlando, Florida 32816, United States.

Department of Materials Science and Engineering, The Ohio State University, 140W 19th Avenue, Columbus, Ohio 43210, United States.

出版信息

J Am Chem Soc. 2024 Sep 4;146(35):24288-24295. doi: 10.1021/jacs.4c04515. Epub 2024 Aug 22.

Abstract

Layered metal thio- and selenophosphates (MTPs) are a family of van der Waals gapped materials that exhibit a multitude of functionalities in terms of magnetic, ferroelectric, and optical properties. Despite the recent progress in terms of understanding the material properties of these compounds, the potential of MTPs as a material class yet needs further scrutiny, especially in terms of nonlinear optical properties. Recent reports of efficient low-order harmonic generation and extremely high third-order nonlinear optical properties in MTPs suggest the potential application of these materials in integrated nanophotonics. In this article, we investigate the high-order nonlinear response of bulk and exfoliated thin-film crystals of copper indium thiophosphate (CIPS) to intense mid-infrared fields through experimental and computational studies of high-order harmonic generation (HHG). From a driving laser source with a 3.2 μm wavelength, we generate odd and even harmonics up to the 10th order, exceeding the bandgap of the material. We note conversion efficiencies as high as 10 measured for the fifth and seventh harmonics and observe that the harmonic intensities follow a power law scaling with the driving laser intensity, suggesting a perturbative nonlinear optical origin of the observed harmonics for both bulk and thin flakes. Furthermore, first-principles calculations suggest that the generation of the highest harmonic orders results from electron-electron interactions, suggesting a correlation-mediated enhancement of the high-order optical nonlinearity.

摘要

层状金属硫代和硒代磷酸盐(MTPs)是一类范德华能隙材料,在磁、铁电和光学性质方面展现出多种功能。尽管在理解这些化合物的材料性质方面最近取得了进展,但MTPs作为一类材料的潜力仍需进一步审视,特别是在非线性光学性质方面。最近关于MTPs中高效低阶谐波产生和极高三阶非线性光学性质的报道表明了这些材料在集成纳米光子学中的潜在应用。在本文中,我们通过对高阶谐波产生(HHG)的实验和计算研究,研究了块状和剥离薄膜形式的硫代磷酸铜铟(CIPS)晶体对强中红外场的高阶非线性响应。从波长为3.2μm的驱动激光源出发,我们产生了高达第10阶的奇次和偶次谐波,超过了材料的带隙。我们注意到,对于第五和第七谐波,测量到的转换效率高达10,并且观察到谐波强度随驱动激光强度呈幂律缩放,这表明对于块状和薄片形式,观察到的谐波具有微扰非线性光学起源。此外,第一性原理计算表明,最高阶谐波的产生源于电子 - 电子相互作用,这表明高阶光学非线性存在关联介导的增强。

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