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[5], '在两个间隙中的空间分布相同,': [6], '那么这两个放电间隙的放电特性存在相似性.': [7], '数值模拟中设置三个缩比间隙:': [8], '气隙A的长度为30': [9], 'mm,': [10, 17, 21, 32], '气压为1': [11], 'Torr': [12], '(1': [13], 'Torr=133.322': [14], 'Pa);': [15], '气隙B的长度为15': [16], '气压为2': [18], 'Torr;': [19], '气隙C的长度为10': [20], '气压为3': [22], 'Torr.': [23], '仿真结果表明,': [24], '三个间隙均为辉光放电,': [25], '并存在明显的阴极位降区.': [26], '间隙A,': [27], 'B,': [28], 'C': [29], '的阴极位降区的厚度dC分别为2.71,': [30], '1.35和0.87': [31], '相对应的pd值几乎相同,': [33], '即pdC≈2.70': [34], 'Torr·mm.': [35], '这与氩气辉光放电Paschen曲线最低点(pd≈2.86': [36], 'Torr·mm)相近.': [37], '缩比间隙的放电参数的特性(如工作电压、电场、电流密度、电子密度和离子密度的沿“空间”px的分布)的数值计算结果与放电相似性猜想所预计的结果一致.': [38], '所以,': [39], '可以认为放电相似性猜想适用于低气压氩气缩比间隙的辉光放电.': [40]}, 'cited_by_api_url': 'https://api.openalex.org/works?filter=cites:W3114819875', 'counts_by_year': [{'year': 2019, 'cited_by_count': 2}, {'year': 2018, 'cited_by_count': 2}, {'year': 2017, 'cited_by_count': 1}, {'year': 2016, 'cited_by_count': 1}, {'year': 2014, 'cited_by_count': 1}], 'updated_date': '2024-09-14T10:44:00.097449', 'created_date': '2021-01-05'}