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Visible emission from bismuth-doped yttrium oxide thin films for lighting and display applications

机译:掺杂铋的氧化钇薄膜的可见光发射用于照明和显示应用

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摘要

Due to the great development of light sources for several applications from displays to lighting, great efforts are devoted to find stable and efficient visible emitting materials. Moreover, the requirement of Si compatibility could enlarge the range of applications inside microelectronic chips. In this scenario, we have studied the emission properties of bismuth doped yttrium oxide thin films grown on crystalline silicon. Under optical pumping at room temperature a stable and strong visible luminescence has been observed. In particular, by the involvement of Bi ions in the two available lattice sites, the emission can be tuned from violet to green by changing the excitation wavelength. Moreover, under electron beam at low accelerating voltages (3 keV) a blue emission with high efficiency and excellent stability has been recorded. The color is generated by the involvement of Bi ions in both the lattice sites. These peculiarities make this material interesting as a luminescent medium for applications in light emitting devices and field emission displays by opening new perspectives for the realization of silicon-technology compatible light sources operating at room temperature.
机译:由于从显示器到照明的多种应用的光源的巨大发展,致力于寻找稳定和有效的可见光发射材料。而且,Si兼容性的要求可以扩大微电子芯片内部的应用范围。在这种情况下,我们研究了在晶体硅上生长的铋掺杂氧化钇薄膜的发射特性。在室温下的光泵浦下,已经观察到稳定且强烈的可见光。特别地,通过在两个可用的晶格位点中引入Bi离子,可以通过更改激发波长将发射光从紫光调整为绿色。此外,在低加速电压(3 keV)的电子束下,已记录了具有高效率和出色稳定性的蓝色发射。颜色是由Bi离子在两个晶格位点的参与所产生的。这些特性通过打开实现在室温下工作的硅技术兼容光源的实现的新视角,使这种材料成为发光器件和场发射显示器中应用的发光介质而变得有趣。

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