High Power Laser and Particle Beams, Volume. 37, Issue 7, 079003(2025)

Nuclear reaction driven by near-field induced electrical explosion and its application in smart neutron source

Jun Yuan1,3, Jie Zhang1,3, Wenyu Zhang2,3, Sijuan Ye1,3, Qiang Wei2,3, Kun Xiao1,3, Jing Pan1,3, Tengfei Ma1,3, and Cheng Zhang1,3
Author Affiliations
  • 1National Key Laboratory of Land and Air Based Information Perception and Control, Xi’an Modern Control Technology Research Institute, Xi’an 710065, China
  • 2North Development Investment Co, Ltd, Xi’an 710016, China
  • 3Saint Green Laboratory, Xi’an Modern Control Technology Research Institute & North Development Investment Co, Ltd, Xi’an 710065, China
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    Figures & Tables(13)
    Electrical principle of piezoelectric pulse power source and the relationship between output power and pulse width
    Spherical induction field and nuclear reactor configuration
    Principle of field acceleration of the sheath of an electric explosion and the simulation curve of proton acceleration
    Plasma dispersion characteristics and polarization resonance amplification effect
    Prototype of reaction device and piezoelectric pulse power source
    Experimental system composition
    Spherical electromagnetic field and spherical plasma optical image
    Proton population polarization process and cyclotron resonance spectroscopic image
    Neutron energy spectrum curve
    Neutron count curve
    Neutron activation and CR39 track chip processing results
    Depth SEM (electron microscopy) scan results of a proton beam in a lithium target
    XPS detection results for lithium targets after the reaction
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    Jun Yuan, Jie Zhang, Wenyu Zhang, Sijuan Ye, Qiang Wei, Kun Xiao, Jing Pan, Tengfei Ma, Cheng Zhang. Nuclear reaction driven by near-field induced electrical explosion and its application in smart neutron source[J]. High Power Laser and Particle Beams, 2025, 37(7): 079003

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    Paper Information

    Category: Advanced Interdisciplinary Science

    Received: Nov. 18, 2024

    Accepted: Mar. 21, 2025

    Published Online: Jul. 18, 2025

    The Author Email:

    DOI:10.11884/HPLPB202537.240401

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