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◆ The Journal of Physical Chemistry C2026-04-08· Materials science

Yb <sup>3+</sup> -Doped GaN Nanoceramics as a New Material for Broad Band White Light Emission

Agata Musialek, Robert Tomala, Giorgio Enrico Gagliardo Briuccia, W. Stręk

原始摘要(英文原文)· Original abstract
The effect of grain boundary defects on the optoelectronic properties of Yb 3+ -doped GaN nanoceramics was investigated. Structural analysis confirmed crystallization in the wurtzite structure, with a maximum concentration of Yb 3+ up to 3%. Optical spectroscopy in the visible range allowed us to confirm the defect nature of the obtained materials, and VUV measurements confirmed the presence of deep surface defects, which are active recombination centers for broad band white light emission. In the NIR range, the characteristic emission of the f–f Yb 3+ transitions was confirmed, as well as energy transfer between the Yb 3+ ions and the host. Laser-induced white emission (LIWE) was observed after irradiation with CW NIR laser diode in vacuum, revealing the excitation threshold and nonlinearity with increasing laser power density. The emission process was accompanied by efficient photoconductivity. The defined hysteresis contrast reaches a maximum of over 65% for undoped GaN, while the introduction of Yb 3+ ions reduces the hysteresis, or optical capacitance, reaching a minimum value of almost 23% for the 3% Yb 3+ sample. The obtained results clearly demonstrate that the obtained nanoceramics can behave as optically controllable memristive-like systems.
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Yb <sup>3+</sup> -Doped GaN Nanoceramics as a New Material for Broad Band White Light Emission — 科研速览 Science Skim