无偏筛选深紫外和中红外非线性光学晶体:长期被忽视的共价和混合阳离子图案

IF 3.1 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Jizhang Wang, Meng Ye, Xiaomi Guo, Yang Li, Nianlong Zou, He Li, Zetao Zhang, Sibo Zhao, Zhiming Xu, Haowei Chen, Dezhao Wu, Ting Bao, Yong Xu, Wenhui Duan
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引用次数: 0

摘要

二次谐波发生(SHG)是最重要的非线性光学(NLO)效应之一,具有强烈 SHG 效应的晶体被称为 NLO 晶体。传统的阴离子基团理论指导了早期 NLO 晶体的发现,但迄今发现的 NLO 活性基团种类有限。在本研究中,我们进行了材料型无偏高通量第一原理计算,从材料数据库中筛选出数千种材料,以寻找目标频率下的 NLO 晶体。计算了这些材料的电子、线性和非线性光学特性。其中,从 229 种应用了剪刀修正的材料中,确定了 40 种适用于中红外(MIR)频率的 NLO 晶体和 5 种适用于深紫外(DUV)频率的 NLO 晶体。作为延伸,还确定了几个主导 SHG 响应的 NLO 活性图案,它们在类似材料中都显示出良好的可转移性。此外,对于因数据库中缺乏准确带隙值而无法应用剪刀差校正的材料,还提出了基于带隙和 SHG 感度缩放规律的 NLO 晶体推荐列表。新 NLO 晶体和 NLO 活性图案的发现超越了传统方法,将大大加速 NLO 晶体在 DUV 和 MIR 频率的应用,并丰富我们在寻找和设计新 NLO 晶体方面的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Unbiased screening of deep-ultraviolet and mid-infrared nonlinear optical crystals: Long-neglected covalent and mixed-cation motifs

Unbiased screening of deep-ultraviolet and mid-infrared nonlinear optical crystals: Long-neglected covalent and mixed-cation motifs
One of the most important nonlinear optical (NLO) effects is the second-harmonic generation (SHG), and crystals with strong SHG effects are called NLO crystals. The traditional anion group theory has guided the early discovery of NLO crystals, but the variety of NLO-active motifs discovered so far is limited. In this study, material-type unbiased high-throughput first-principles calculations are performed to screen thousands of materials in a materials database for NLO crystals at target frequencies. The electronic, linear, and nonlinear optical properties of these materials are calculated. Among them, 40 NLO crystals suitable for mid-infrared (MIR) frequencies and 5 for deep-ultraviolet (DUV) frequencies are identified, from 229 materials to which scissors correction is applied. As an extension, several NLO-active motifs that dominate the SHG response are identified, and they all show good transferability among similar materials. Furthermore, for materials where scissors correction cannot be applied due to the lack of accurate bandgap value in the database, a recommendation list of NLO crystals based on the scaling law of bandgap and SHG susceptibility is presented. The discovery of new NLO crystals and NLO-active motifs beyond traditional methods will greatly accelerate the applications of NLO crystals at DUV and MIR frequencies and enrich our understanding in the search and design of new NLO crystals.
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来源期刊
Physical Review Materials
Physical Review Materials Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
5.80
自引率
5.90%
发文量
611
期刊介绍: Physical Review Materials is a new broad-scope international journal for the multidisciplinary community engaged in research on materials. It is intended to fill a gap in the family of existing Physical Review journals that publish materials research. This field has grown rapidly in recent years and is increasingly being carried out in a way that transcends conventional subject boundaries. The journal was created to provide a common publication and reference source to the expanding community of physicists, materials scientists, chemists, engineers, and researchers in related disciplines that carry out high-quality original research in materials. It will share the same commitment to the high quality expected of all APS publications.
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