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等離子體鞘層加速模擬質(zhì)子輻照連續(xù)譜 數(shù)值仿真研究

Numerical simulation of production of protons with continuous energy spectrum by plasma sheath acceleration

  • 摘要: 質(zhì)子輻照是導致空間飛行器熱控涂層性能衰退的重要原因。目前地面多采用單一能量的粒子替代空間能量連續(xù)分布的粒子來開展質(zhì)子輻照模擬試驗。文章提出了在一個脈沖寬度內(nèi)獲得連續(xù)能量質(zhì)子譜的方法,即脈沖偏壓等離子體鞘層加速方法。文章利用細胞粒子(particle-in-cell,PIC)模型對在3種脈沖偏壓三角波作用下等離子體鞘層加速質(zhì)子以獲得連續(xù)能量質(zhì)子譜的動力學過程進行了數(shù)值仿真研究,分析了3種脈沖三角波形對鞘層擴展、離子加速及能量分布的影響。結(jié)果表明,電勢空間分布和離子運動狀態(tài)緊密聯(lián)系,鞘層內(nèi)離子密度變化受到脈沖波形和離子熱擴散運動的綜合影響,通過調(diào)整脈沖偏壓三角波形,能夠獲得不同的能量-劑量分布,從而為下一步工作打下基礎(chǔ)。

     

    Abstract: The proton irradiation is one of the most important causes of the performance degradation of spacecraft thermal control coatings. The effects of proton irradiation are mainly investigated by using protons of single energy instead of those with continuous energy spectrum in ground testing. In this paper, a method of producing protons with continuous energy spectrum by plasma sheath acceleration in the period of waveform pulse is proposed, which involves the plasma sheath acceleration of bias voltage waveform pulse. The plasma sheath acceleration dynamics is simulated numerically to obtain the protons with continuous energy spectrum under three kinds of triangular bias voltage pulse waveforms by using a particle-in-cell model. The effects of three kinds of triangular bias voltage pulse waveforms on plasma sheath expansion, proton acceleration and energy-dose distribution are discussed. The results show that the space potential distribution has a close relationship with the ion movement, and the ion density is affected by both bias voltage pulse waveforms and ion thermal diffusion. The energy-dose distribution can be adjusted by changing the bias voltage pulse waveforms, which provides a platform for further studies.

     

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