Ginzburg D, Oster L, Eliyahu I, Reshes G, Biderman S, Horowitz Y S
Department of Biotechnology Engineering, Ben Gurion University of the Negev, Beer Sheva, Israel.
Nuclear Physics and Engineering Department, Soreq Nuclear Research Center, Yavneh, Israel.
Radiat Prot Dosimetry. 2019 Aug 1;184(2):248-255. doi: 10.1093/rpd/ncy206.
Many dosimetric applications and especially those involved in clinical dosimetry are hampered by the supralinearity of TLD-100 which begins at a level of dose of 1 Gy. This research investigates the effect of optical excitation following irradiation on the dose-response. It is expected that this will lead to a more linear dose-response, however, irrespective of the hoped-for linearity, the theoretical/kinetic simulations of the effect of optical excitation will further enhance our understanding of the thermoluminescence mechanisms, especially the role of spatially correlated trapping and luminescent centers. In the following, the various stages carried out in these investigations are discussed and preliminary results presented.
许多剂量测定应用,尤其是那些涉及临床剂量测定的应用,都受到TLD - 100超线性的阻碍,这种超线性在剂量达到1 Gy时开始出现。本研究调查了辐照后光激发对剂量响应的影响。预计这将导致更线性的剂量响应,然而,无论期望的线性如何,光激发效应的理论/动力学模拟将进一步加深我们对热释光机制的理解,特别是空间相关陷阱和发光中心的作用。以下将讨论这些研究中进行的各个阶段并展示初步结果。