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Research of green emitting rare-earth doped materials as potential quantum-cutter

机译:绿色发光稀土掺杂材料作为潜在量子切割机的研究

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摘要

Because the energy of vacuum ultraviolet (VUV) photons emitted by xenon plasma discharge is more than twice that of visible photons, quantum cutting appears to be a promising process in rare-earth doped materials in order to obtain efficient phosphors for mercury free lighting devices as well as for plasma display panels. With an aim of application, it is important to take into account the emitting color of the developed new phosphors. Most of the time, this leads to use systems with at least two kinds of rare earth ions: one of them playing the role of energy sensitizer, and the other one being in charge of emitting the light of the suitable color. We focus our attention on green rare-earth doped materials. In order to get very efficient phosphors, it is not only necessary to get the highest possible quantum yield, but also to have a material characterized by a strong absorption in the VUV range. Borate and fluoride matrices doped with Dy~(3+)/ Tb~(3+) couples of ions are selected according to the position of the 5d band of dysprosium as green emitters.
机译:由于氙等离子体放电产生的真空紫外(VUV)光子的能量是可见光子的两倍以上,因此在稀土掺杂材料中量子切割似乎是一个有前途的过程,以便获得无汞照明设备的有效磷光体。以及等离子显示面板。为了应用,重要的是要考虑已开发的新型磷光体的发射颜色。在大多数情况下,这会导致使用至少具有两种稀土离子的系统:一种担当能量敏化剂的角色,另一种担负着发出适当颜色的光的责任。我们将注意力集中在绿色稀土掺杂材料上。为了获得非常有效的磷光体,不仅需要获得尽可能高的量子产率,而且还必须具有在VUV范围内具有强吸收特性的材料。根据的5d带作为绿色发射极的位置,选择掺有Dy〜(3 +)/ Tb〜(3+)离子对的硼酸盐和氟化物基质。

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