物理学报
物理學報
물이학보
2013年
11期
358-364
,共7页
何寿杰?%哈静%刘志强%欧阳吉庭%何锋
何壽傑?%哈靜%劉誌彊%歐暘吉庭%何鋒
하수걸?%합정%류지강%구양길정%하봉
空心阴极放电%流体-亚稳态原子传输模型%电子密度%分步电离
空心陰極放電%流體-亞穩態原子傳輸模型%電子密度%分步電離
공심음겁방전%류체-아은태원자전수모형%전자밀도%분보전리
hollow cathode discharge%fluid-metastable atoms transport model%density of electrons%stepwise ion-ization
利用流体-亚稳态原子传输混合模型研究了氩气矩形空心阴极放电稳态时的参数.数值计算得到了压强为10 Torr时的电势、电子、离子和亚稳态氩原子密度以及电子平均能量的分布.结果表明电子和离子密度峰值为4.7×1012 cm?3,亚稳态原子密度峰值为2.1×1013 cm?3.本文同时对流体-亚稳态原子传输混合模型和单一流体模型模拟得到的放电参数进行了比较.结果表明,分步电离是新电子产生的重要来源,亚稳态原子对空心阴极放电特性有重要影响.与单一流体模型相比,混合模型计算得到的电子密度升高,阴极鞘层宽度和电子平均能量降低.
利用流體-亞穩態原子傳輸混閤模型研究瞭氬氣矩形空心陰極放電穩態時的參數.數值計算得到瞭壓彊為10 Torr時的電勢、電子、離子和亞穩態氬原子密度以及電子平均能量的分佈.結果錶明電子和離子密度峰值為4.7×1012 cm?3,亞穩態原子密度峰值為2.1×1013 cm?3.本文同時對流體-亞穩態原子傳輸混閤模型和單一流體模型模擬得到的放電參數進行瞭比較.結果錶明,分步電離是新電子產生的重要來源,亞穩態原子對空心陰極放電特性有重要影響.與單一流體模型相比,混閤模型計算得到的電子密度升高,陰極鞘層寬度和電子平均能量降低.
이용류체-아은태원자전수혼합모형연구료아기구형공심음겁방전은태시적삼수.수치계산득도료압강위10 Torr시적전세、전자、리자화아은태아원자밀도이급전자평균능량적분포.결과표명전자화리자밀도봉치위4.7×1012 cm?3,아은태원자밀도봉치위2.1×1013 cm?3.본문동시대류체-아은태원자전수혼합모형화단일류체모형모의득도적방전삼수진행료비교.결과표명,분보전리시신전자산생적중요래원,아은태원자대공심음겁방전특성유중요영향.여단일류체모형상비,혼합모형계산득도적전자밀도승고,음겁초층관도화전자평균능량강저.
The characteristics of rectangular hollow cathode discharge are studied based on a fluid model combined with a transport model for metastable Ar atoms in argon. The distribution of potential, density of electrons and ions, and the density of metastable atoms are calculated at a pressure of 10 Torr. The peak density of electron and ion is 4.7×1012 cm?3, and the peak density of metastable atoms is 2.1 × 1013 cm?3. Results obtained in terms of fluid-metastable hybrid model are compared with that in terms of the fluid model, which show that the electron produced by stepwise ionization is one of the important source of new electrons, and the metastable atoms have an obvious effect on the hollow cathode discharge. Compared with the results calculated in terms of fluid model, the density of electrons obtained in terms of hybrid model increases, and the depth of cathode sheath and the averaged electron energy decrease.