紫外线
材料科学
非线性光学
激光器
光电子学
硼
铍
光学
非线性系统
化学
物理
量子力学
有机化学
作者
Miriding Mutailipu,Min Zhang,Hongping Wu,Zhihua Yang,Yihan Shen,Junliang Sun,Shilie Pan
标识
DOI:10.1038/s41467-018-05575-w
摘要
Abstract Nonlinear optical (NLO) materials are the vital components of future photoelectric technologies as they can broaden the tunable wavelength range supplied by common laser sources. However, the necessary prerequisites for a practical NLO material are rather strict. Accordingly, considerable efforts have been focused on finding potential NLO materials. Here we report two asymmetric beryllium-free borates Pna 2 1 - and P $$\bar 6$$ 6 ̄ 2 m -Ba 3 Mg 3 (BO 3 ) 3 F 3 featuring NLO-favorable 2 ∞ [Mg 3 O 2 F 3 (BO 3 ) 2 ] layered structures. The reversible phase transition among two polymorphs was demonstrated by multiple experimental tests. The optical measurements reveal that Pna 2 1 -Ba 3 Mg 3 (BO 3 ) 3 F 3 possesses the optical properties required for ultraviolet NLO applications. Remarkably, Pna 2 1 -Ba 3 Mg 3 (BO 3 ) 3 F 3 has a large laser damage threshold, a deep-ultraviolet cutoff edge, a favorable anisotropic thermal expansion as well as the capacity of insolubility in water. These optical properties can be comparable or superior to that of commercial NLO material β -BaB 2 O 4 , which make Pna 2 1 -Ba 3 Mg 3 (BO 3 ) 3 F 3 a promising ultraviolet NLO material.
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