Recent advances in multipactor physics and mitigation  被引量:2

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作  者:Asif Iqbal De‐Qi Wen John Verboncoeur Peng Zhang 

机构地区:[1]Department of Electrical and Computer Engineering,Michigan State University,East Lansing,Michigan,USA [2]Department of Computational Mathematics,Science,and Engineering,Michigan State University,East Lansing,Michigan,USA

出  处:《High Voltage》2023年第6期1095-1114,共20页高电压(英文)

摘  要:Recent progress made in the prediction,characterisation,and mitigation of multipactor discharge is reviewed for single‐and two‐surface geometries.First,an overview of basic concepts including secondary electron emission,electron kinetics under the force law,multipactor susceptibility,and saturation mechanisms is provided,followed by a discus-sion on multipactor mitigation strategies.These strategies are categorised into two broad areas–mitigation by engineered devices and engineered radio frequency(rf)fields.Each approach is useful in different applications.Recent advances in multipactor physics and engineering during the past decade,such as novel multipactor prediction methods,un-derstanding space charge effects,schemes for controlling multipacting particle trajec-tories,frequency domain analysis,high frequency effects,and impact on rf signal quality are presented.In addition to vacuum electron multipaction,multipactor‐induced ioni-zation breakdown is also reviewed,and the recent advances are summarised.

关 键 词:multip KINETICS SUSCEPTIBILITY 

分 类 号:TM1[电气工程—电工理论与新技术]

 

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