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Enhanced luminescence of erbium silicate: interstitial lithium directly regulates the lattice structure of erbium compound crystals

机译:硅酸铒增强发光:间隙锂直接调控铒化合物晶体的晶格结构

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摘要

We prepared high-intensity luminescent films with a high LDP (Er3+ luminescence lifetime-concentration product) of 1.54 × 1019 s × cm−3, where lithium-doped erbium silicate grains are embedded in cristobalite. The near-infrared and up-conversion luminescence intensities of erbium silicate show ∼55 and 40 times enhancement by lithium-doping, respectively. Lithium-doping directly regulates the lattice structure of erbium silicate to enhance luminescence by reducing the crystal field symmetry around erbium, meanwhile, interstitial lithium does not dilute the concentration of erbium ions. Furthermore, lithium-containing dopants promote silica to crystallize, enhancing the luminescence of erbium silicate by reducing the interface defects. These films are expected to achieve high-gain film waveguide amplifiers in chip-scale optoelectronic integration. And this method opens up possibilities to be universally applicable to erbium compounds for enhancing luminescence by directly regulating the lattice structure.
机译:我们准备好的高强度发光的电影高的自民党(Er3 +发光lifetime-concentration产品)为1.54×1019年代×厘米−3,lithium-doped铒硅酸盐谷物是嵌入在方石英。近红外和上转换发光强度的铒硅酸盐∼55岁和40次lithium-doping增强,分别。硅酸盐铒的晶格结构提高发光通过减少晶体与此同时,现场周围对称铒间质锂不稀铒离子的浓度。lithium-containing搀杂剂可以促进二氧化硅结晶,提高铒的发光硅酸盐通过减少界面缺陷。电影预计将实现高增益的电影在芯片级光电波导放大器集成。可能性是普遍适用的铒化合物增强发光直接调节晶格结构。

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