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Monte Carlo simulations and benchmark measurements on the response of TE(TE) and Mg(Ar) ionization chambers in photon, electron and neutron beams

机译:TE(TE)和Mg(Ar)电离室在光子,电子和中子束中的响应的蒙特卡洛模拟和基准测量

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摘要

The paired ionization chambers (ICs) technique is commonly employed to determine neutron and photon doses in radiology or radiotherapy neutron beams, where neutron dose shows very strong dependence on the accuracy of accompanying high energy photon dose. During the dose derivation, it is an important issue to evaluate the photon and electron response functions of two commercially available ionization chambers, denoted as TE(TE) and Mg(Ar), used in our reactor based epithermal neutron beam. Nowadays, most perturbation corrections for accurate dose determination and many treatment planning systems are based on the Monte Carlo technique. We used general purposed Monte Carlo codes, MCNP5, EGSnrc, FLUKA or GEANT4 for benchmark verifications among them and carefully measured values for a precise estimation of chamber current from absorbed dose rate of cavity gas. Also, energy dependent response functions of two chambers were calculated in a parallel beam with mono-energies from 20 keV to 20 MeV photons and electrons by using the optimal simple spherical and detailed IC models. The measurements were performed in the well-defined (a) four primary M-80, M-100, M120 and M150 X-ray calibration fields, (b) primary ~(60)Co calibration beam, (c) 6 MV and 10 MV photon, (d) 6 MeV and 18 MeV electron LINACs in hospital and (e) BNCT clinical trials neutron beam. For the TE(TE) chamber, all codes were almost identical over the whole photon energy range. In the Mg(Ar) chamber, MCNP5 showed lower response than other codes for photon energy region below 0.1 MeV and presented similar response above 0.2 MeV (agreed within 5% in the simple spherical model). With the increase of electron energy, the response difference between MCNP5 and other codes became larger in both chambers. Compared with the measured currents, MCNP5 had the difference from the measurement data within 5% for the ~(60)Co, 6 MV, 10 MV, 6 MeV and 18 MeV LINACs beams. But for the Mg(Ar) chamber, the derivations reached 7.8-16.5% below 120 kVp X-ray beams. In this study, we were especially interested in BNCT doses where low energy photon contribution is less to ignore, MCNP model is recognized as the most suitable to simulate wide photon-electron and neutron energy distributed responses of the paired ICs. Also, MCNP provides the best prediction of BNCT source adjustment by the detector's neutron and photon responses.
机译:成对的电离室(ICs)技术通常用于确定放射学或放射治疗中子束中的中子和光子剂量,其中中子剂量对伴随的高能光子剂量的准确性非常依赖。在剂量推导过程中,评估两个基于我们的基于反应堆的超热中子束的市售电离室(称为TE(TE)和Mg(Ar))的光子和电子响应功能是一个重要的问题。如今,大多数用于精确确定剂量的扰动校正和许多治疗计划系统都是基于蒙特卡洛技术的。我们使用通用的蒙特卡洛代码,MCNP5,EGSnrc,FLUKA或GEANT4进行基准验证,并使用仔细测量的值根据腔体气体的吸收剂量率精确估算腔室电流。此外,通过使用最佳简单球形和详细IC模型,在单束能量为20 keV至20 MeV的光子和电子的平行束中,计算了两个腔室的能量依赖性响应函数。在定义明确的(a)四个主要M-80,M-100,M120和M150 X射线校准场中进行测量,(b)初级〜(60)Co校准光束,(c)6 MV和10 MV光子,(d)医院中的6 MeV和18 MeV电子LINAC,以及(e)BNCT临床试验中子束。对于TE(TE)室,在整个光子能量范围内,所有代码几乎相同。在Mg(Ar)室中,对于低于0.1 MeV的光子能量区域,MCNP5显示出比其他代码更低的响应,而在0.2 MeV以上(在简单的球形模型中同意在5%之内)显示出类似的响应。随着电子能量的增加,两个腔室中MCNP5和其他代码之间的响应差异变得更大。与测量的电流相比,〜(60)Co,6 MV,10 MV,6 MeV和18 MeV LINAC光束的MCNP5与测量数据的差异在5%以内。但是对于Mg(Ar)室,在120 kVp X射线束以下,导数达到7.8-16.5%。在这项研究中,我们对BNCT剂量特别感兴趣,在这种剂量下,低能量光子的贡献不容忽视,MCNP模型被认为是最适合模拟配对IC的宽光子电子和中子能量分布响应的剂量。此外,MCNP还可以通过探测器的中子和光子响应来提供BNCT源调整的最佳预测。

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    Health Physics Division, Institute of Nuclear Energy Research, Taoyuan County, Taiwan;

    Health Physics Division, Institute of Nuclear Energy Research, No. 1000, Wenhua Rd., Longtan Township, Taoyuan County 32546, Taiwan;

    Nuclear Science and Technology Development Center, National Tsing Hua University, Hsinchu City, Taiwan;

    Institute of Nuclear Engineering and Science, National Tsing Hua University, Hsinchu City, Taiwan;

    Atomic Energy Council, New Taipei City, Taiwan;

    Dept. of Biomedical Engineering and Environmental Sciences, National Tsing Hua University, Hsinchu, Taiwan;

    Institute for Energy, Joint Research Centre, European Commission, Petten, The Netherlands;

    Dept. of Engineering and System Science, National Tsing Hua University, Hsinchu, Taiwan;

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  • 正文语种 eng
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  • 关键词

    Paired ionization chambers; Current response; Monte Carlo; EGSnrc; MCNP; FLUKA;

    机译:成对的电离室;当前反应;蒙特卡洛;EGSnrc;MCNP;福鲁卡;

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