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Nitrogen-doped diamond: Thermoluminescence and dosimetric applications

机译:掺氮金刚石:热致发光和剂量学应用

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摘要

Diamond exhibits outstanding properties that make it a material of interest for radiation detection and thermoluminescence and particularly in the field of dosimetry applications. The emergence of synthetic samples from the chemical vapour deposition (CVD) technique offers new. possibilities to fabricate cheap and reproducible devices, and if the same reliability on the thermoluminescence (TL) properties would be attained several applications towards radiotherapy are foreseen. To date however, the poor reproducibility and limited linearity of the TL signal with the dose in non-doped CVD diamonds requires particular improvements. The main purpose of this present study is to focus on the control of the trapping level populations in CVD diamond from the deliberate incorporation of nitrogen impurities during the film growth. Several samples were elaborated using the MWCVD technique while varying the nitrogen incorporation from 4 to 40 ppm in the gas mixture. The effective incorporation of nitrogen in the films was appreciated using Rama spectroscopy. The aim of the current communication is to report on the effects of nitrogen incorporation in the films and its effect on the TL signal response towards the improvement of the TL dosimetric applications. The results suggest that optimised dosimetric properties could be obtained with incorporation of low and precisely controlled nitrogen concentrations.
机译:金刚石具有出色的性能,使其成为辐射检测和热致发光(尤其是在剂量测定应用领域中)感兴趣的材料。化学气相沉积(CVD)技术合成样品的出现提供了新的方法。制造廉价和可重复生产的设备的可能性,以及如果能够获得相同的热发光(TL)性能可靠性,则可以预见在放射治疗方面有多种应用。然而,迄今为止,在非掺杂CVD金刚石中,随着剂量的增加,TL信号的低再现性和有限的线性需要特殊的改进。本研究的主要目的是着重于通过在膜生长过程中故意掺入氮杂质来控制CVD金刚石中的俘获能级。使用MWCVD技术制作了几个样品,同时将混合气体中的氮掺入量从4 ppm更改为40 ppm。使用拉玛光谱法可以有效地将氮掺入薄膜中。当前交流的目的是报告膜中掺氮的影响及其对TL信号响应的影响,以改善TL剂量学应用。结果表明,通过掺入低浓度和精确控制的氮浓度可以获得最佳的剂量学性质。

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