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Introducing dual excitation and tunable dual emission in ZnO through selective lanthanide (Er3+/Ho3+) dopingud

机译:通过选择性镧系元素(Er3 + / Ho3 +)掺杂在ZnO中引入双激发和可调谐双发射

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摘要

We have introduced dual excitation properties in the multifunctional semiconductor ZnO by controlled solid state diffusion of dopant lanthanide ions like Er3+ and Ho3+ into the lattice at 500 degrees C. So far light emission from doped ZnO has been explored either under UV or IR excitation. Our results show that the emission colour can be tuned from cyan to red under UV (band edge, 377 nm) excitation and from green to red under IR (980 nm) excitation in ZnO through selected doping of lanthanide ions. Doping lanthanide ions in ZnO changes its morphology and emission characteristics. Whereas down conversion emission under UV excitation is due to across band gap excitation and subsequent donor-acceptor pair recombination, the dependence of up conversion emission yield on pump laser power indicates that two to three photon processes may be more effective in ZnO hosts for frequency upconversion.
机译:我们通过在500摄氏度下将掺杂的镧系元素离子如Er3 +和Ho3 +固态扩散到晶格中,从而在多功能半导体ZnO中引入了双重激发特性。到目前为止,已经研究了在紫外或红外激发下掺杂ZnO的发光。我们的结果表明,通过选择掺杂镧系元素离子,可以在ZnO中在紫外光(波段边缘,377 nm)激发下将发射色从青色调整为红色,在红外(980 nm)激发下将发射色从绿色调整为红色。 ZnO中掺杂镧系离子会改变其形态和发射特性。紫外激发下的下转换发射是由于带隙激发和随后的供体-受体对重组引起的,而上转换发射量对泵浦激光功率的依赖性表明,在ZnO主体中,两到三个光子过程对于频率上转换可能更有效。

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