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Structural and optical properties of europium doped zirconia single crystals fibers grown by laser floating zone

机译:激光浮区生长grown掺杂氧化锆单晶纤维的结构和光学性能

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摘要

Yttria stabilized zirconia single crystal fibers doped with europium ions were developed envisaging optical applications. The laser floating zone technique was used in order to grow millimetric high quality single crystal fibers. The as-grown fibers are completely transparent and inclusion free, exhibiting a cubic structure. Under ultraviolet (UV) excitation, a broad emission band appears at 551 nm. The europium doped fibers are translucent with a tetragonal structure and exhibit an intense red emission at room temperature under UV excitation. The fingerprint transition lines between the 5D0 and 7FJ(0–4) multiplets of the Eu3+ ions are observed with the main emission line at ∼ 606 nm due to 5D0→7F2 transition. Photoluminescence excitation and wavelength dependent the photoluminescence spectra confirm the existence of different Eu3+ optical centers.© 2011 American Institute of Physics
机译:掺杂了离子的氧化钇稳定的氧化锆单晶纤维被开发用于光学应用。为了生长毫米高质量的单晶纤维,使用了激光浮区技术。刚生长的纤维是完全透明的且无夹杂物,表现出立方结构。在紫外线(UV)激发下,宽发射带出现在551 nm处。 do掺杂的纤维是半透明的,具有四方结构,并且在室温下在紫外线激发下表现出强烈的红色发射。由于5D0→7F2跃迁,Eu3 +离子在5D0和7FJ(0–4)多重峰之间的指纹跃迁线在主发射线处约为606 nm。光致发光激发和与波长相关的光致发光光谱证实存在不同的Eu3 +光学中心。©2011美国物理研究所

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