首页> 美国卫生研究院文献>Scientific Reports >Single crystal growth optical absorption and luminescence properties under VUV-UV synchrotron excitation of type III Ce3+:KGd(PO3)4 a promising scintillator material
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Single crystal growth optical absorption and luminescence properties under VUV-UV synchrotron excitation of type III Ce3+:KGd(PO3)4 a promising scintillator material

机译:III型Ce3 +:KGd(PO3)4的VUV-UV同步加速器激发下的单晶生长光吸收和发光特性一种有希望的闪烁体材料

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摘要

Scintillator materials have gained great interest for many applications, among which the medical applications stand out. Nowadays, the research is focused on finding new scintillator materials with properties that suit the needs of each application. In particular, for medical diagnosis a fast and intense response under high-energy radiation excitation is of great importance. Here, type III Ce3+-doped KGd(PO3)4 single crystals with high crystalline quality are grown and optically characterized as a new promising scintillator material. The 4f → 5d electronic transitions of Ce3+ are identified by optical absorption. The optical absorption cross section of Ce3+ for the electronic transition from the 2F5/2 to the 5d1 level is 370 × 10−20 cm2. The luminescence of KGd0.996Ce0.004(PO3)4 crystal by exciting the 5d levels of Ce3+ with VUV-UV synchrotron radiation shows down-shifting properties with strong emissions at 322 and 342 nm from the 5d1 to 2F5/2 and 2F7/2 levels of Ce3+ with a short decay time of ~16 ns, which is very suitable for scintillator applications. Moreover, these intense emissions are also observed when Gd3+ is excited since an energy transfer from Gd3+ to Ce3+ exists.
机译:闪烁体材料在许多应用中引起了极大的兴趣,其中医学应用脱颖而出。如今,研究集中在寻找具有适合每种应用需求的特性的新型闪烁体材料。特别地,对于医学诊断,在高能辐射激发下的快速而强烈的响应是非常重要的。在此,生长出具有高晶体质量的III型Ce 3 + 掺杂的KGd(PO3)4单晶,并在光学上被表征为一种新型的闪烁体材料。 Ce 3 + 的4f→5d电子跃迁通过光吸收来鉴定。 Ce 3 + 2 F5 / 2电子跃迁到5d1能级的光吸收截面为370×10 -20 cm 2 。通过用VUV-UV同步加速器激发5d浓度的Ce 3 + 来激发KGd0.996Ce0.004(PO3)4晶体的发光,显示了向下位移的性质,在322和342nm处有强发射。 Ce 3 + 的5d1到 2 F5 / 2和 2 F7 / 2的水平,衰减时间很短,约为16 ns。适用于闪烁器应用。此外,由于存在从Gd 3 + 到Ce 3 + 的能量转移,因此当Gd 3 + 激发时也会观察到这些强烈的发射。

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