核电子学与探测技术
覈電子學與探測技術
핵전자학여탐측기술
NUCLEAR ELECTRONICS & DETECTION TECHNOLOGY
2015年
1期
99-105
,共7页
李国栋%王倩%吴丽%邓保霞
李國棟%王倩%吳麗%鄧保霞
리국동%왕천%오려%산보하
Al2O3:C晶体%辐射发光%剂量特性%数值模拟
Al2O3:C晶體%輻射髮光%劑量特性%數值模擬
Al2O3:C정체%복사발광%제량특성%수치모의
Al2 O3:C crystals%radio-luminescence%dosimetry characteristics%numerical simulation
在医学放射治疗上可以利用Al2 O3:C晶体产生的辐射发光( Radio-luminescence,RL)测量放射治疗的剂量率。本文采用双电子陷阱双复合中心动力学模型对Al2 O3:C晶体的辐射发光剂量特性做了数值模拟,给出了β射线辐照Al2 O3:C晶体过程中各能级上载流子和RL产生的动态过程,并首次数值模拟了F+中心浓度和高剂量辐照对RL的影响。模拟结果表明:β射线连续辐照Al2 O3:C时其产生的RL强度由初始值达到平衡值,且初始值和平衡值都与剂量率成正比,随着Al2 O3:C晶体中F+中心浓度的增加,RL强度增强,初始值和平衡值都增加,最后给出了高剂量辐照Al2 O3:C晶体对RL的影响。文章中数值模拟的结果和先前实验结果相一致,同时模拟结果对Al2 O3:C晶体在制备过程中如何提高RL强度从理论上指明了方向。
在醫學放射治療上可以利用Al2 O3:C晶體產生的輻射髮光( Radio-luminescence,RL)測量放射治療的劑量率。本文採用雙電子陷阱雙複閤中心動力學模型對Al2 O3:C晶體的輻射髮光劑量特性做瞭數值模擬,給齣瞭β射線輻照Al2 O3:C晶體過程中各能級上載流子和RL產生的動態過程,併首次數值模擬瞭F+中心濃度和高劑量輻照對RL的影響。模擬結果錶明:β射線連續輻照Al2 O3:C時其產生的RL彊度由初始值達到平衡值,且初始值和平衡值都與劑量率成正比,隨著Al2 O3:C晶體中F+中心濃度的增加,RL彊度增彊,初始值和平衡值都增加,最後給齣瞭高劑量輻照Al2 O3:C晶體對RL的影響。文章中數值模擬的結果和先前實驗結果相一緻,同時模擬結果對Al2 O3:C晶體在製備過程中如何提高RL彊度從理論上指明瞭方嚮。
재의학방사치료상가이이용Al2 O3:C정체산생적복사발광( Radio-luminescence,RL)측량방사치료적제량솔。본문채용쌍전자함정쌍복합중심동역학모형대Al2 O3:C정체적복사발광제량특성주료수치모의,급출료β사선복조Al2 O3:C정체과정중각능급상재류자화RL산생적동태과정,병수차수치모의료F+중심농도화고제량복조대RL적영향。모의결과표명:β사선련속복조Al2 O3:C시기산생적RL강도유초시치체도평형치,차초시치화평형치도여제량솔성정비,수착Al2 O3:C정체중F+중심농도적증가,RL강도증강,초시치화평형치도증가,최후급출료고제량복조Al2 O3:C정체대RL적영향。문장중수치모의적결과화선전실험결과상일치,동시모의결과대Al2 O3:C정체재제비과정중여하제고RL강도종이론상지명료방향。
Radio-luminescence from carbon-doped aluminum oxide ( Al2 O3:C) crystal can be used for dose rate measurements in radiotherapy.In this paper,we numerically simulate dose characteristics of RL in Al2 O3:C crystals using a kinetic model involving two electron traps and two kinds of recombination centers, dynamic processes for the charge carriers of different levels are given during Al2 O3:C is irradiated, the effect of the F+center concentration and high dose on the RL are numerically simulated for the first time.Simulation results show that the RL intensity rises from initial value to balance value when Al2 O3:C crystal is radiated, both the initial value and balance value varies linearly with the dose rate.The RL intensity increases with the increase of F +center concentration in Al2 O3:C, the initial value and balance value increases correspondingly, finally the influence of high dose on the RL is given.The numerical simulation results in this paper are in good agreement with the previous experimental results.Meanwhile, the simulation results point out theoretically that the direc-tion on how to enhance the RL intensity in the preparation of Al2 O3:C crystal.