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使用 PENELOPE 代码和蚁群算法进行蒙特卡罗模拟,以研究 MOSFET 探测器。

Monte Carlo simulation using the PENELOPE code with an ant colony algorithm to study MOSFET detectors.

机构信息

Departamento de Electrónica y Tecnología de Computadores, Universidad de Granada, E-18071 Granada, Spain.

出版信息

Phys Med Biol. 2009 Oct 21;54(20):6263-76. doi: 10.1088/0031-9155/54/20/015. Epub 2009 Oct 1.

Abstract

In this work we have developed a simulation tool, based on the PENELOPE code, to study the response of MOSFET devices to irradiation with high-energy photons. The energy deposited in the extremely thin silicon dioxide layer has been calculated. To reduce the statistical uncertainties, an ant colony algorithm has been implemented to drive the application of splitting and Russian roulette as variance reduction techniques. In this way, the uncertainty has been reduced by a factor of approximately 5, while the efficiency is increased by a factor of above 20. As an application, we have studied the dependence of the response of the pMOS transistor 3N163, used as a dosimeter, with the incidence angle of the radiation for three common photons sources used in radiotherapy: a (60)Co Theratron-780 and the 6 and 18 MV beams produced by a Mevatron KDS LINAC. Experimental and simulated results have been obtained for gantry angles of 0 degrees, 15 degrees, 30 degrees, 45 degrees, 60 degrees and 75 degrees. The agreement obtained has permitted validation of the simulation tool. We have studied how to reduce the angular dependence of the MOSFET response by using an additional encapsulation made of brass in the case of the two LINAC qualities considered.

摘要

在这项工作中,我们开发了一种基于 PENELoPE 代码的模拟工具,用于研究 MOSFET 器件对高能光子辐照的响应。计算了沉积在极薄的二氧化硅层中的能量。为了降低统计不确定性,我们实现了一个蚁群算法,以驱动分裂和俄罗斯轮盘赌的应用作为方差减少技术。通过这种方式,不确定性降低了约 5 倍,而效率提高了 20 倍以上。作为应用,我们研究了作为剂量计使用的 pMOS 晶体管 3N163 对三种常用于放射治疗的常见光子源的辐射入射角的响应的依赖性:(60)Co Theratron-780 和由 Mevatron KDS LINAC 产生的 6 和 18 MV 束。已经获得了用于旋转架角度为 0 度、15 度、30 度、45 度、60 度和 75 度的实验和模拟结果。获得的一致性允许对模拟工具进行验证。我们研究了如何通过在考虑的两种 LINAC 质量的情况下使用额外的黄铜封装来减少 MOSFET 响应的角度依赖性。

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