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Multifunctional bismuth-doped nanoporous silica glass : from blue-green, orange, red, and white light sources to ultra-broadband infrared amplifiers

机译:多功能铋掺杂纳米多孔石英玻璃:从蓝绿色,橙色,红色和白色光源到超宽带红外放大器

摘要

Ultra-broadband luminescent sources that emit light over an extremely wide wavelength range are of great interest in the fields of photonics, medical treatment, and precision measurement. Extensive research has been conducted on materials doped with rare-earth and transition-metal ions, but the goal of fabricating an ultra-broadband emitter has not been attained, We present a facile method to realize this kind of novel light source by stabilizing "active" centers (bismuth) in a "tolerant" host (nanoporous silica glass). The obtained highly transparent materials, in which, unusually, multiple bismuth centers (Bi+, Bi2+, and Bi3+) can be stabilized, emit in an ultra-broadband wavelength range from blue-green, orange, red, and white to the near-infrared region. This tunable luminescence covers the spectral range of the traditional three primary colors (RGB) and also the telecommunications windows.
机译:在光子学,医学治疗和精密测量领域中,在非常宽的波长范围内发光的超宽带发光源引起了极大的兴趣。已经对掺有稀土和过渡金属离子的材料进行了广泛的研究,但尚未达到制造超宽带发射器的目的。我们提出了一种通过稳定“活性成分”来实现这种新型光源的简便方法。 ”(铋)位于“宽容的”基质(纳米多孔石英玻璃)中。所获得的高度透明的材料,其中通常可以稳定多个铋中心(Bi +,Bi2 +和Bi3 +),并在从蓝绿色,橙色,红色和白色到近红外的超宽带波长范围内发射光区域。这种可调节的发光范围涵盖了传统的三基色(RGB)的光谱范围以及电信窗口。

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