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Energy transfer between Gd{sup}(3+) and other rare earth ions in the UV region

机译:Gd {sup}(3+)与紫外线区域中其他稀土离子之间的能量转移

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摘要

Energy transfer from Pr{sup}(3+), Nd{sup}(3+), Er{sup}(3+) or Tm{sup}(3+) to Gd{sup}(3+) leading to Gd{sup}(3+) emission at 312nm was observed in GdPO{sub}4 doped with these ions under 172nm excitation. Among these ions, P{sup}(3+) provides the strongest Gd{sup}(3+) emission. Energy transfer from Gd{sup}(3+) to Dy{sup}(3+) was also observed under excitation by Gd{sup}(3+) absorption at 276nm. As a result of this energy transfer, Gd{sup}(3+) emission is quenched and strong, visible luminescence of Gd{sup}(3+) appears. Such energy transfer processes are to be taken in account, when a quauntum cutting process using Gd{sup}(3+) ions is investigated.
机译:能量从Pr {sup}(3 +),Nd {sup}(3 +),Er {sup}(3+)或Tm {sup}(3+)传输到Gd {sup}(3+)导致Gd在掺有这些离子的GdPO {sub} 4在172nm激发下观察到312nm处的{sup}(3+)发射。在这些离子中,P {sup}(3+)提供最强的Gd {sup}(3+)发射。在Gd {sup}(3+)在276nm吸收的激发下,也观察到了从Gd {sup}(3+)到Dy {sup}(3+)的能量转移。这种能量转移的结果是,Gd {sup}(3+)的发射被淬灭,并且出现了Gd {sup}(3+)的强而可见的发光。在研究使用Gd {sup}(3+)离子进行的量子切割过程时,应考虑到这种能量转移过程。

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