论文标题

在持续的磷光体中揭示陷阱深度分布,并带有用于充电的热屏障

Revealing trap depth distributions in persistent phosphors with a thermal barrier for charging

论文作者

Feng, Ang, Joos, Jonas J., Du, Jiaren, Smet, Philippe F.

论文摘要

在给定的充电和工作条件下持续的磷光体的性能取决于负责这些独特特性的陷阱的特性。陷阱的特征是它们相关的障碍物的热脱落的高度,并且经常在真实材料中发现陷阱深度的连续分布。准确地确定陷阱深度分布是对持续磷光体的理解和发展的重要性。但是,提取陷阱深度分布通常也受到充电的热屏障的存在,从而导致陷阱的温度依赖性填充。对于这种情况,我们提出了一种从在不同充电温度下获得的一组热发光(TL)曲线中提取陷阱深度分布的方法。假设一阶动力学,TL曲线首先通过Tikhonov正则化转化为电子种群功能。随后,获得了陷阱作为其深度的函数,通过所谓的填充功能量化。最后,从填充功能中重建了基础陷阱深度分布。与现有方法相比,所提出的方法在陷阱深度分布方面的精度和分辨率有了很大的改善。因此,这是了解持久性和储存磷剂的(DE)捕获行为的前进一步。

The performance of persistent phosphors under given charging and working conditions is determined by the properties of the traps that are responsible for these unique properties. Traps are characterized by the height of their associated barrier for thermal detrapping, and a continuous distribution of trap depths is often found in real materials. Accurately determining trap depth distributions is hence of importance for the understanding and development of persistent phosphors. However, extracting the trap depth distribution is often hindered by the presence of a thermal barrier for charging as well, which causes a temperature-dependent filling of traps. For this case, we propose a method for extracting the trap depth distribution from a set of thermoluminescence (TL) curves obtained at different charging temperatures. The TL curves are first transformed into electron population functions via the Tikhonov regularization, assuming first-order kinetics. Subsequently, the occupation of the traps as a function of their depth, quantified by the so-called filling function, is obtained. Finally, the underlying trap depth distribution is reconstructed from the filling functions. The proposed method provides a substantial improvement in precision and resolution for the trap depth distribution compared with existing methods. This is hence a step forward in understanding the (de)trapping behavior of persistent and storage phosphors.

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