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Electron-Positron Pair Production in Strong Fields Characterized by Conversion Energy

Electron-Positron Pair Production in Strong Fields Characterized by Conversion Energy
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摘要 It is demonstrated that the production mechanism of a pair which is produced from vacuum under an external field can be characterized by its conversion energy, a quantity defined as total mass-energy of this pair. The value of this quantity is checked with quantum field theoretical simulations for several field configurations and it is found that conversion energy can show all the production channels and give the yields of each channel specifically. We detect signatures of effective mass, combination of different photons as well as dynamically assisted Schwinger mechanism and represented more features of these processes in the view of conversion energy. It is demonstrated that the production mechanism of a pair which is produced from vacuum under an external field can be characterized by its conversion energy, a quantity defined as total mass-energy of this pair. The value of this quantity is checked with quantum field theoretical simulations for several field configurations and it is found that conversion energy can show all the production channels and give the yields of each channel specifically. We detect signatures of effective mass, combination of different photons as well as dynamically assisted Schwinger mechanism and represented more features of these processes in the view of conversion energy.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2017年第1期76-82,共7页 理论物理通讯(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant No.11475026
关键词 specific calculation of QED relativistic wave equation other multiphoton processes specific calculation of QED relativistic wave equation other multiphoton processes
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