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首页> 外文期刊>Medical Physics >A Monte Carlo comparison of the response of the PTW-diamond and the TL-diamond detectors in megavoltage photon beams.
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A Monte Carlo comparison of the response of the PTW-diamond and the TL-diamond detectors in megavoltage photon beams.

机译:蒙特卡洛比较兆伏光子束中PTW金刚石和TL金刚石探测器的响应。

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摘要

A detailed Monte Carlo study of the PTW-diamond solid state detector response in megavoltage photon beams (60Co gamma rays to 25 MV x rays) has been performed with the EGS4 Monte Carlo Code. The sensitive volume of the diamond detector is a disk of diameter 4.4 mm and thickness 0.40 mm. The phantom material was water and the irradiation depth was usually 3 cm but additional simulations were performed at six other depths for the 10 and 25 MV x rays. Results show that the PTW-diamond detector response per unit of absorbed dose is constant within 1% for photon beam energies ranging from 60Co gamma rays to 25 MV x rays. Accurate depth dose curves for 10 and 25 MV x-ray beams may be measured with the diamond detector since the response per unit of absorbed dose at different depths in a water phantom is also constant to within 1% for depths ranging from 3 to 25 cm and field sizes ranging from 2.5 cm by 2.5 cm to 10 cm by 10 cm. An examination of the difference between the PTW-diamond detector and the wall-less form of the detector (e.g., TLDs) revealed that there is no significant difference in their response in megavoltage photon beams. This implies that the encapsulation of the diamond dosimeter causes less than a 1.3% change in its response for these megavoltage photon beams. Analysis of the total dose deposited in the sensitive volume of the detector shows that the PTW-diamond detector behaves as an intermediate-sized cavity, not a simple Bragg-Gray cavity, since the dose contribution from photon interactions within the cavity (alpha(c)) to the total cavity dose is 8% for 25 MV x rays and increases to 42% for 60Co gamma rays.
机译:已使用EGS4蒙特卡洛代码对兆伏光子束(60Co伽马射线到25 MV x射线)中的PTW-金刚石固态检测器响应进行了详细的蒙特卡洛研究。金刚石探测器的敏感体积是直径为4.4毫米,厚度为0.40毫米的圆盘。幻像材料是水,照射深度通常为3 cm,但是在其他六个深度对10和25 MV x射线进行了附加模拟。结果表明,对于从60Co伽马射线到25 MV x射线的光子束能量,每单位吸收剂量的PTW-金刚石检测器响应均恒定在1%以内。可以使用钻石探测器测量10和25 MV X射线束的精确深度剂量曲线,因为对于3到25 cm的深度,水体模中不同深度的单位吸收剂量的响应也恒定在1%以内视野范围从2.5厘米乘2.5厘米到10厘米乘10厘米。对PTW金刚石检测器和无壁检测器(例如TLD)之间的差异进行检查后发现,它们在兆伏光子束中的响应没有显着差异。这意味着金刚石剂量计的封装对这些兆伏光子束的响应引起的变化小于1.3%。对沉积在探测器敏感体积中的总剂量的分析表明,PTW金刚石探测器的行为就像是中等大小的腔体,而不是简单的布拉格-灰色腔体,因为腔体内光子相互作用的剂量贡献很大(α(c ))对于25 MV x射线的总腔体剂量为8%,对于60Coγ射线的腔体总剂量为42%。

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