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在小场条件下,横向磁场中 PTW 微金刚石和微硅的剂量响应。

The dose response of PTW microDiamond and microSilicon in transverse magnetic field under small field conditions.

机构信息

University Clinic for Medical Radiation Physics, Medical Campus Pius Hospital, Carl von Ossietzky University, Oldenburg, Germany.

Physikalisch-Technische Bundesanstalt, PTB, Braunschweig, Germany.

出版信息

Phys Med Biol. 2021 Jul 19;66(15). doi: 10.1088/1361-6560/ac0f2e.

Abstract

The aim of the present work is to investigate the behavior of two diode-type detectors (PTW microDiamond 60019 and PTW microSilicon 60023) in transverse magnetic field under small field conditions. A formalism based on TRS 483 has been proposed serving as the framework for the application of these high-resolution detectors under these conditions. Measurements were performed at the National Metrology Institute of Germany (PTB, Braunschweig) using a research clinical linear accelerator facility. Quadratic fields corresponding to equivalent square field sizesbetween 0.63 and 4.27 cm at the depth of measurement were used. The magnetic field strength was varied up to 1.4 T. Experimental results have been complemented with Monte Carlo simulations up to 1.5 T. Detailed simulations were performed to quantify the small field perturbation effects and the influence of detector components on the dose response. The does response of both detectors decreases by up to 10% at 1.5 T in the largest field size investigated. In = 0.63 cm, this reduction at 1.5 T is only about half of that observed in field sizes > 2 cm for both detectors. The results of the Monte Carlo simulations show agreement better than 1% for all investigated conditions. Due to normalization at the machine specific reference field, the resulting small field output correction factors for both detectors in magnetic fieldkQclin,QmsrBare smaller than those in the magnetic field-free case, where correction up to 6.2% at 1.5 T is required for the microSilicon in the smallest field size investigated. The volume-averaging effect of both detectors was shown to be nearly independent of the magnetic field. The influence of the enhanced-density components within the detectors has been identified as the major contributors to their behaviors in magnetic field. Nevertheless, the effect becomes weaker with decreasing field size that may be partially attributed to the deficiency of low energy secondary electrons originated from distant locations in small fields.

摘要

本工作旨在研究两种二极管型探测器(PTW microDiamond 60019 和 PTW microSilicon 60023)在小场条件下横向磁场中的行为。提出了一种基于 TRS 483 的形式主义,作为在这些条件下应用这些高分辨率探测器的框架。在德国国家计量研究院(PTB,不伦瑞克)使用研究型临床直线加速器设施进行了测量。使用了与测量深度处等效正方形场尺寸为 0.63 至 4.27cm 的二次场。磁场强度变化高达 1.4T。实验结果用蒙特卡罗模拟补充至 1.5T。进行了详细的模拟以量化小场扰动效应和探测器组件对剂量响应的影响。在研究的最大场尺寸下,两个探测器的剂量响应在 1.5T 时下降了高达 10%。在 0.63cm 处,与在>2cm 的场尺寸下观察到的相比,在 1.5T 时这种减小仅约为一半。蒙特卡罗模拟的结果显示,在所有研究条件下,吻合度优于 1%。由于在机器特定参考场处进行归一化,因此在磁场中,两个探测器的小场输出校正因子kQclin,QmsrBare 均小于无磁场情况,在研究的最小场尺寸下,微硅在 1.5T 时需要校正高达 6.2%。两个探测器的体积平均效应几乎与磁场无关。已确定探测器内增强密度组件的影响是其在磁场中行为的主要贡献者。然而,随着场尺寸的减小,该影响变得较弱,这可能部分归因于小场中来自远距离的低能二次电子的缺乏。

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