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Computer-Assisted Design of a Superior Be2BO3F Deep-Ultraviolet Nonlinear-Optical Material

机译:高级BE2BO3F深层非线性非线性光学材料的计算机辅助设计

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摘要

Deep-ultraviolet (DUV) nonlinear-optical (NLO) materials generating coherent DUV light by a direct second-harmonic-generation (SHG) process have long been pursued as industrially useful lasers. For several decades, KBe2BO3F2 (KBBF) has been regarded as the best DUV-NLO material; it is characterized by a short DUV phase-matching edge of 161 nm and a large SHG coefficient of 0.47 pm/V. However, it suffers a strong layering tendency, hindering the growth of large crystals for commercial use. Here, we use a computer-aided swarm structure searching technique to design an alternative DUV-NLO material with a new atmospheric-pressure phase Be2BO3F2 with a P (6) over bar 2c space group (gamma-BBF) that outperforms the DUV-NLO properties of KBBF. The predicted DUV phase-matching edge and SHG coefficient of gamma-BBF are 152 rim and 0.70 pm/V, respectively. The structure of gamma-BBF reduces the layering tendency compared with KBBF because of the absence of K atoms in the gamma-BBF crystal. Our work paves the way for superior DUV-NLO materials that can be grown as large crystals for commercial applications.
机译:通过直接的二次谐波发电(SHG)工艺产生相干DUV光的深紫外线(DUV)非线性光学(NLO)材料长期以来,作为工业上有用的激光,长期以来一直追求。几十年来,KBE2BO3F2(KBBF)被认为是最好的DUV-NLO材料;其特征在于161nm的短duv相位匹配边缘,大的SHG系数为0.47m / v。然而,它存在强烈的分层趋势,阻碍了用于商业用途的大晶体的生长。在这里,我们使用计算机辅助的群结构搜索技术来设计具有新的大气压相位为2bo3f2的替代Duv-nlo材料,其具有P(6)的P(伽马-BBF),其优于Duv-NLO KBBF的属性。伽马-BBF的预测DUV相位匹配边缘和SHG系数分别为152个边缘和0.70pm / v。由于在γ-BBF晶体中没有K原子,γ-BBF的结构降低了与KBBF相比的分层趋势。我们的工作为优越的Duv-NLO材料铺平了可以种植的商业应用的大晶体。

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