4.6 Article

Novel Nd3+and Ho3+co-doped multifunctional CeF3 crystal for laser and magneto-optical applications

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MATERIALS LETTERS
卷 344, 期 -, 页码 -

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DOI: 10.1016/j.matlet.2023.134388

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Crystal growth; Crystal structure; Optical materials and properties; Magneto-optical materials

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A 1.5 at.% Nd3+ and 0.5 at.% Ho3+ co-doped CeF3 single crystal was successfully grown and its absorption and fluorescence characteristics were evaluated. The spectroscopic properties of the crystal were investigated based on the Judd-Ofelt theory, and the fluorescence lifetimes of Nd3+ and Ho3+ were determined. Additionally, the magneto-optical performance of the crystal was studied for the first time, and the Verdet constants at different wavelengths were measured, showing its potential applications in lasers and magneto-optical devices.
In this study, a 1.5 at.% Nd3+ and 0.5 at.% Ho3+ co-doped CeF3 (Nd,Ho:CeF3) single crystal was successfully grown by the vertical Bridgman method. The absorption and fluorescence characteristics of the fabricated crystal were evaluated. The spectroscopic properties of the Nd,Ho:CeF3 crystal were investigated based on the Judd-Ofelt (J-O) theory. The parameters omega 2, omega 4, and omega 6 of Ho3+ were fitted as 0.338 x 10-20, 0.731 x 10- 20, and 0.350 x 10-20 cm2, respectively. The fluorescence lifetimes centered at 1064 and 1970 nm for Nd3+ and Ho3+ were 261 and 47 mu s, respectively. Notably, the magneto-optical performance of the Nd,Ho:CeF3 crystal was investigated for the first time. The measured Verdet constants of Nd,Ho:CeF3 at 532, 632.8, 1064, 1310, and 1550 nm were 228.0, 154.7, 42.4, 29.1, and 18.5 rad center dot T-1 center dot m- 1, respectively, which were significantly larger than those of pure CeF3 and traditional Tb3Ga5O12. The results demonstrated that Nd,Ho:CeF3 crystals can be applied in both lasers and magneto-optical devices.

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