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Significant Variations in the Luminescence of Samarium(II) Doped Strontium and Barium Octaborate as a Function of Excitation Wavelength and Sample Temperature

机译:钐(II)掺杂锶和钡额外表达的显着变化作为激发波长和样品温度的函数

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摘要

The emission features characteristic of divalent samarium formed in samarium-doped barium octaborate (BaB8O13) and strontium borate (Sr2B16O26) have been studied as a function of excitation wavelength and sample temperature. The emission spectra of divalent samarium in both materials exhibit a surprisingly strong temperature dependence. When divalent samarium is doped into BaB8O13, changes in excitation wavelength and sample temperature both result in significant variations in the emission features associated with the material. It is therefore hypothesized that the variation arises primarily from selected excitation of individual samarium sites within the BaB8O13 matrix. The emission features characteristic of divalent samarium in Sr2B16O26, also exhibited significant variation as the sample temperature was lowered, but this variation was irrespective of the excitation wavelength. This appears to indicate dependence solely on competition between de-excitation pathways.
机译:已经研究了在钐掺杂七元钡(Bab8O13)和硼酸锶锶(SR2B16O26)中形成的二价钐的发射特征是作为激发波长和样品温度的函数。 两种材料中二价钐的发射光谱表现出令人惊讶的强烈的温度依赖性。 当二价钐被掺杂到Bab8O13中时,激发波长和样品温度的变化都导致与材料相关的发射特征的显着变化。 因此,假设该变异主要来自BAB8O13基质中的个体钐位点的选定激发。 SR2B16O26中二价钐的发射特征,也表现出显着的变化,因为样品温度降低,但这种变化无论激发波长如何。 这似乎仅表明依赖于励磁途径之间的竞争。

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