双折射
材料科学
Crystal(编程语言)
二次谐波产生
紫外线
各向异性
光电子学
铷
简单(哲学)
非线性光学
GSM演进的增强数据速率
晶体结构
光子晶体
非线性光学
光学材料
波长
谐波
光学
折射率
结晶学
单晶
纳米技术
钥匙(锁)
晶体生长
作者
Bingliang Cheng,Wenjuan Ma,Junhua Zhang,Meng Cheng,Wenqi Jin,Zhihua Yang,Xifa Long,Shilie Pan,Yi Yang
出处
期刊:Small
[Wiley]
日期:2026-06-07
卷期号:: e74081-e74081
摘要
ABSTRACT Ultraviolet nonlinear optical (UV NLO) crystals are key components in solid‐state lasers. However, commercialized crystals remain limited, especially in exploring new materials within chemically simple systems poses significant challenges. Here, using the classic LiB 3 O 5 as a template and rearranging the [B 3 O 7 ] units, thereby the birefringence can be enhanced to achieve a shorter phase‐matching wavelength, which leads to the successful synthesis of a competitive 266 nm UV NLO crystal RbB 3 O 5 ‐ Cc . The crystal exhibits excellent NLO properties: a short deep‐UV cut‐off edge (<182 nm), a large second harmonic generation response (1.4 × KH 2 PO 4 ), and a sufficient birefringence (0.067 at 1064 nm), with the shortest phase‐matching wavelength down to 220 nm. This study highlights the achievement of enhanced structural integrity and improved material properties through structural modification, which provides new insights into the exploration of high‐performance UV NLO crystals, and boosts confidence in developing new functional materials in simple systems.
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