Laser-driven neutron sources: principles, progress and prospects
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1. College of Science, National University of Defense Technology, Changsha 410073 , China ;2. School of Materials Science and Engineering, Xiangtan University, Xiangtan 411105 , China ;3. School of Nuclear Science and Technology, University of South China, Hengyang 421001 , China

Clc Number:

O539;O571.42;O571.53;TL632+.1

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    Abstract:

    A novel neutron source with high brightness, short pulse, and compact-size--LDNS (laser-driven neutron source) offers considerable promise for a wide range of applications, including non-destructive material testing, neutron imaging, neutron resonance spectroscopy, and nuclear astrophysics, positioning it as a vital supplement to conventional neutron sources. Beginning with an overview of the production methods for LDNS, the fundamental principles were outlined behind various production mechanisms. By reviewing the historical development and recent progress of LDNS, the substantial potential of it for both fundamental research and practical applications was highlighted. Diagnostic techniques and its principles for characterizing key parameters of LDNS were systematically introduced, with special emphasis on recent advances at home and abroad in measuring neutron yield, energy, pulse duration, and source size. Basing on above, this review proceeds to identify technical challenges in the development of LDNS and concludes with a perspective on future research directions.

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余同普, 李超智, 谢琛, 等. 激光中子源:原理、进展与展望[J]. 国防科技大学学报, 2026, 48(3): 385-410.

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  • Received:December 29,2025
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  • Online: June 04,2026
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