光子上转换
激发
激发态
材料科学
激光器
功率(物理)
功率密度
光电子学
光学
发光
原子物理学
物理
量子力学
作者
Wenwu You,Chennan Zhang,Ruoxi Yu,Xiaomin Zhang,Jiacai Li,Ming‐Xing Li,Xu Zhili,Pingping Fan,Gencai Pan,Yanli Mao
出处
期刊:Optics Letters
[The Optical Society]
日期:2024-05-08
卷期号:49 (11): 2978-2978
摘要
Upconversion (UC) materials are renowned for their ability to convert low-energy photons into high-energy ones. The manipulation of parameters allows for the observation of multicolored UC luminescence (UCL) within a single material system. While modulation of multicolored UCL commonly relies on excitation at approximately 980 nm, investigation into multicolored UC materials activated by a 1532 nm excitation source remains comparatively scarce. In this work, we introduce NaLnF 4 :Er 3+ as a novel class of smart luminescent materials. When the power density of a 1532 nm laser increases from 0.5 to 20.0 W/cm 2 , the emission peak positions remain unchanged, but the red-to-green (R/G) ratio decreases significantly from 18.82 to 1.48, inducing a color shift from red to yellow and ultimately to green. In contrast, no color variation is observed when NaLnF 4 :Er 3+ is excited with a 980 nm laser at different power densities. This power-dependent multicolored UCL of NaLnF 4 :Er 3+ excited at 1532 nm can be attributed to the competitive processes of upward pumping and downward relaxation of electrons on the 4 I 9/2 level of Er 3+ . By utilizing the unique UC characteristics of NaLnF 4 :Er 3+ , its potential utility in anti-counterfeiting applications is demonstrated. Our research highlights the distinctive optical properties of NaLnF 4 :Er 3+ and provides novel insights into the use of luminescent materials in optical anti-counterfeiting technologies.
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